CN205277192U - Separate temperature intercommunication glass - Google Patents

Separate temperature intercommunication glass Download PDF

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Publication number
CN205277192U
CN205277192U CN201520958508.2U CN201520958508U CN205277192U CN 205277192 U CN205277192 U CN 205277192U CN 201520958508 U CN201520958508 U CN 201520958508U CN 205277192 U CN205277192 U CN 205277192U
Authority
CN
China
Prior art keywords
glass
thermal insulation
communicating pipe
pipe
steel part
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520958508.2U
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Chinese (zh)
Inventor
冯云鹏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chongqing Branch Of Shenzhen Guanghua Hollow Glass Engineering Co Ltd
Original Assignee
Chongqing Branch Of Shenzhen Guanghua Hollow Glass Engineering Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Chongqing Branch Of Shenzhen Guanghua Hollow Glass Engineering Co Ltd filed Critical Chongqing Branch Of Shenzhen Guanghua Hollow Glass Engineering Co Ltd
Priority to CN201520958508.2U priority Critical patent/CN205277192U/en
Application granted granted Critical
Publication of CN205277192U publication Critical patent/CN205277192U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The patent discloses a be a building material, one kind high concretely relates to separates the temperature window form. Intercommunication glass, including a set of mutual concatenation separate temperature glass, every separates and all is equipped with the inner chamber that is used for filling inert gas in the temperature glass, concatenation department is equipped with the steel part that supplies to separate temperature glass location usefulness, and adjacent separating is equipped with the communicating pipe that intercommunication two separates temperature glass inner chamber between the temperature glass, stride communicating pipe and locate on the steel part, set up the opening with communicating pipe mouth of pipe butt joint on temperature glass, inner chamber department is equipped with the connection at the apron of communicating pipe mouth of pipe department, and the external diameter of this apron is greater than the open -ended internal diameter, moreover leave the space of the usefulness of ventilating between the apron and the communicating pipe mouth of pipe. The technical defect that structural stability is poor who exists has been overcome to this patent among the prior art, provide one kind and kept making adjacent glass intercommunication separate temperature intercommunication glass as an organic whole under the stable prerequisite of steel part.

Description

Thermal insulation is connected glass
Technical field
The utility model relates to building material field, specifically, relates to a kind of high thermal insulation window body.
Background technology
In modern architecture ORIENTED DOOR AND WINDOW DESIGN, owing to considering window profile, to amass big daylighting good, elegant in appearance and deeply by the welcome of human consumer. But, window type is more big, more many by door and window dispersed heat, particularly winter need consume coal, electricity more many, the sulfurous gas of generation quantity discharged also relatively increase. Simultaneously in the summer of sweltering heat, thermal radiation, ultraviolet that sunlight produces shine directly into indoor by windowpane, make room temp raise very soon and increase the electric power load of air-conditioning. Therefore, building doors and windows winter temperature scatter and disappear and summer solar heat radiation problem be problem anxious to be resolved.
Prior art provides a kind of high thermal insulation window body, by window frame and what glass was formed; Window frame top layer scribbles the Polyurethane coating with high-wearing feature, high strength, high-weatherability uniformly, window frame is inlaid with double glazing, rare gas element it is filled with in double glazing, outermost glass adopts the good ultra-white float glass of heat absorptivity, most inner glass to adopt low emissivity glass, and the glass surface that two glass contact side with rare gas element scribbles low radiation film.
Existing greenhouse glass room forms the netted skeleton of whole greenhouse glass room by steel part, then inlays above-mentioned double glazing in the mesh of skeleton, the greenhouse glass room of final formation and extraneous thermal isolation. But such greenhouse glass room has following technological deficiency:
Greenhouse glass room combines by polylith thermal insulation glass (double glazing), is the steel part forming window frame between adjacent thermal insulation glass. To be communicated as one by each thermal insulation glass (the disposable filling being convenient to rare gas element), it is necessary to offer ventilative through hole on described steel part, steel part and the structural stability of greenhouse glass room skeleton can be reduced like this.
Practical novel content
The utility model is intended to provide a kind of thermal insulation to be connected glass, under the prerequisite keeping steel part stability, adjacent thermal insulation glass is communicated as one.
Thermal insulation in this scheme is connected glass, comprise one group of thermal insulation glass mutually spliced, the inner chamber for filling rare gas element it is equipped with in each thermal insulation glass, described stitching portion is provided with the steel part for thermal insulation glass location, it is provided with the communicating pipe being connected two thermal insulation glass inner chambers between adjacent thermal insulation glass, it is located at described communicating pipe on steel part; Offering and the opening that the communicating pipe mouth of pipe docks on described thermal insulation glass, described inner chamber place is provided with the cover plate being connected to communicating pipe mouth of pipe place, and the external diameter of this cover plate is greater than the internal diameter of described opening, and leaves the space of ventilation between described cover plate and the communicating pipe mouth of pipe.
Adopt the technical solution of the utility model, there is following technique effect:
1. utilize the hole replacing break-through steel part communicating pipe of cross-over connection steel part, under the prerequisite keeping steel part stability, make the inner space of adjacent thermal insulation glass.
2. for avoiding described communicating pipe to come off from thermal insulation glass, being connected with the cover plate being located at thermal insulation glass inner chamber communicating pipe, the external diameter of cover plate is greater than the internal diameter of described opening, and such communicating pipe just not easily comes off from thermal insulation glass. But also remain the space between described cover plate and the communicating pipe mouth of pipe, for ventilation.
Further, between described thermal insulation glass and steel part, sealed strip is installed.
Improve the gas tightness between thermal insulation glass and steel part.
Further, described communicating pipe mouth of pipe place screw thread has sleeve, described sleeve pipe and cover plate is equipped with a threaded hole, is jointly connected with a screw rod in the threaded hole between described sleeve pipe and cover plate.
Due to communicating pipe at least two mouths of pipe, when connecting, it is impossible to rotational communication pipe is threaded two mouths of pipe, so needing the sleeve pipe of a transition, come sleeved and cover plate by screw rod, then revoling tube and the mouth of pipe that is threaded.
Further, described communicating pipe is Y-tube or four-way pipe.
For saving cost of manufacture, a communicating pipe can have multiple mouth of pipe, thus connects multiple thermal insulation glass.
Accompanying drawing explanation
Fig. 1 is the one-piece construction schematic diagram that the utility model thermal insulation is connected glass embodiment.
Fig. 2 is the partial cutaway schematic that the utility model thermal insulation is connected glass embodiment.
Fig. 3 is the structural representation that the utility model thermal insulation is connected communicating pipe in glass embodiment.
Embodiment
Below by embodiment, the utility model is described in further detail:
Reference numeral in Figure of description comprises: sleeve side walls 451, wing plate 43, center post 458, docking post 456, cover plate 45, screw thread S, sleeve pipe 452, communicating pipe 25, most inner glass 22, outermost glass 21, inner chamber 23, steel part 10, thermal insulation glass 20, aerator pump 30.
As shown in Figure 1, the present embodiment thermal insulation is connected glass, comprise one group of thermal insulation glass 20 mutually spliced, every block thermal insulation glass is all double-layer glass structure, it it is the inner chamber 23 filling rare gas element between double glazing, outermost glass 21 adopts the ultra-white float glass that heat absorptivity is good, most inner glass 22 to adopt low emissivity glass, and the glass surface that two glass contact side with rare gas element scribbles low radiation film.
Described stitching portion is provided with the steel part 10(for thermal insulation glass location and window frame), steel part top layer scribbles the Polyurethane coating with high-wearing feature, high strength, high-weatherability uniformly. Between described thermal insulation glass and steel part, sealed strip is installed.
Being provided with the communicating pipe 25 being connected two thermal insulation glass inner chambers between adjacent thermal insulation glass, described communicating pipe is located on steel part. One of them thermal insulation glass is communicated with aerator pump 30.
Described thermal insulation glass is offered and the opening that the communicating pipe mouth of pipe docks, described inner chamber place is provided with the cover plate 459 being connected to communicating pipe mouth of pipe place, the external diameter of this cover plate is greater than the internal diameter of described opening, described communicating pipe mouth of pipe place is provided with screw thread S, be threaded on screw thread sleeve 452, the mid-way of described sleeve pipe and cover plate is equipped with a threaded hole (central position is all provided with the cylinder of a band internal thread hole, such as the center post 458 on cover plate and a docking post 456 connecting in sleeve pipe).
As shown in Figure 2,3, the described mouth of pipe, sleeve pipe and cover plate are coaxial docking, and described sleeve pipe is provided with wing plate 43(and is close in outermost glass 21), jointly it is connected with a screw rod in the threaded hole between described sleeve pipe and cover plate. The length of this screw rod should be longer than the length of described sleeve side walls 451, makes the space leaving ventilation between cover plate and the communicating pipe mouth of pipe.
Above-described is only embodiment of the present utility model, and in scheme, the general knowledge such as known concrete structure and characteristic does not do too much description at this. It is noted that for a person skilled in the art, under the prerequisite not departing from the utility model structure, it is also possible to make some distortion and improvement, if described communicating pipe can also be Y-tube or four-way pipe. These also should be considered as protection domain of the present utility model, and these all can not affect effect and the practical applicability that the utility model is implemented. The protection domain that this application claims should be as the criterion with the content of its claim, and the embodiment in specification sheets etc. record the content that may be used for explaining claim.

Claims (4)

1. thermal insulation is connected glass, comprise one group of thermal insulation glass mutually spliced, the inner chamber for filling rare gas element it is equipped with in each thermal insulation glass, described stitching portion is provided with the steel part for thermal insulation glass location, it is characterized in that: be provided with the communicating pipe being connected two thermal insulation glass inner chambers between adjacent thermal insulation glass, be located at described communicating pipe on steel part; Offering and the opening that the communicating pipe mouth of pipe docks on described thermal insulation glass, described inner chamber place is provided with the cover plate being connected to communicating pipe mouth of pipe place, and the external diameter of this cover plate is greater than the internal diameter of described opening, and leaves the space of ventilation between described cover plate and the communicating pipe mouth of pipe.
2. thermal insulation according to claim 1 is connected glass, it is characterised in that: between described thermal insulation glass and steel part, sealed strip is installed.
3. thermal insulation according to claim 2 is connected glass, it is characterised in that: described communicating pipe mouth of pipe place screw thread has sleeve, described sleeve pipe and cover plate is equipped with a threaded hole, is jointly connected with a screw rod in the threaded hole between described sleeve pipe and cover plate.
4. thermal insulation according to claim 3 is connected glass, it is characterised in that: described communicating pipe is Y-tube or four-way pipe.
CN201520958508.2U 2015-11-27 2015-11-27 Separate temperature intercommunication glass Expired - Fee Related CN205277192U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520958508.2U CN205277192U (en) 2015-11-27 2015-11-27 Separate temperature intercommunication glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520958508.2U CN205277192U (en) 2015-11-27 2015-11-27 Separate temperature intercommunication glass

Publications (1)

Publication Number Publication Date
CN205277192U true CN205277192U (en) 2016-06-01

Family

ID=56061775

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520958508.2U Expired - Fee Related CN205277192U (en) 2015-11-27 2015-11-27 Separate temperature intercommunication glass

Country Status (1)

Country Link
CN (1) CN205277192U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160601

Termination date: 20161127