CN208441338U - A kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate - Google Patents

A kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate Download PDF

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Publication number
CN208441338U
CN208441338U CN201820791982.4U CN201820791982U CN208441338U CN 208441338 U CN208441338 U CN 208441338U CN 201820791982 U CN201820791982 U CN 201820791982U CN 208441338 U CN208441338 U CN 208441338U
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China
Prior art keywords
plate
energy consumption
steel pipe
heat
consumption steel
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Expired - Fee Related
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CN201820791982.4U
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Chinese (zh)
Inventor
魏巍
李超凡
尹东旭
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Liaoning University of Technology
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Liaoning University of Technology
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Priority to CN201820791982.4U priority Critical patent/CN208441338U/en
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Publication of CN208441338U publication Critical patent/CN208441338U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provide the built-in energy consumption steel pipe of one kind without heat bridge heat-insulation wall plate, belong to technical field of buildings.Beneficial effect is that overall coordination performance is good, energy-efficient performance is high, installation operation is significant to be simplified, assembling speed is fast, big component general assembly can be used, industrialization degree is higher, good economical benefit, and avoid environmental pollution, reduce a large amount of field operations, it is constructed by series, make it have good stress performance, the energy dissipation brace ability that energy consumption steel pipe effectively increases wallboard is set, and then increase the shock resistance of wallboard, heat bridge in wallboard can effectively be cut off using the interlaced arrangement architecture design overlapped of two rows of insulation boards, it can avoid the heat bridge effect at the positions such as at non-heat preservation in wallboard without using other heat preserving modes, the shortcomings that not only solving conventional wallboard energy dissipation brace scarce capacity, and wallboard heat insulation effect is promoted to greatest extent, reduce energy consumption.

Description

A kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate
Technical field
The utility model belongs to technical field of buildings, more particularly to the steel pipe that consumes energy built in one kind without heat bridge insulated wall Plate.
Background technique
Building energy conservation is the policy that national government is advocated energetically, and one of major measure is to be kept the temperature, with To achieve the effect that building energy conservation, fire protecting performance cool in summer and warm in winter is depended primarily in house for the transmitting of heat inside and outside this control room For constituting the integral material on roof, wall and floor each section, after the 1970s, external most attention thermal insulation material Development and application under construction, heat insulating material also constantly emerging in large numbers, make every effort to the consumption that the energy is greatly reduced Amount, to reduce environmental pollution and greenhouse effects.However, before 1980, the development of thermal insulation material is very slow in China, And the connectivity of wall entirety is poor, and shock resistance is not high, affects and uses and promote, but by effort in more than 30 years, especially By nearly 20 years high speed developments, from scratch, from single to diversification, quality from low to high, has been formed with swollen many products Variety protection based on swollen perlite, mineral wool, mineral wool, foamed plastics, refractory fibre, heat-insulating calcium silicate product etc. is complete Industry.It is also the best thermal insulation material of performance that polyurethane material, which is most general in the world at present,.Hard polyaminoester has very much Excellent performance is widely used in roof, wall, ceiling, floor, the door of building in American-European countries as heat preserving and insulating material Window etc., according to statistics, compared with the developed country similar in the weather, China's construction unit area energy consumption is still their 3 ~ 5 times.Building Energy conservation is maximum, the most direct, the effective mode of potentiality in various energy saving ways, is the most effective measure for alleviating energy shortage. And in building energy consumption, because energy consumption accounts for about 50% or more of building total energy consumption caused by exterior wall, thus wall thermal insulating is to realize building Energy-efficient key, clay brick production are well-known the harm of environment, and burning will expend a large amount of energy, and generate Exhaust gas cause air pollution, greenhouse effects and acid rain, there are heat insulation effects cannot keep excellent condition for a long time for existing building The problem of, reason is that the heat-preservation cotton in wall can absorb and enters the intracorporal moisture of wall in air, in long period back wall Heat-preservation cotton can decline due to quality of making moist increases, and insulating power weakens, and the level of comfort of inhabitation also decreases.
Utility model content
In order to solve above-mentioned technical problem, the utility model provides keeping the temperature without heat bridge for the built-in energy consumption steel pipe of one kind Wallboard solves the disadvantage that conventional wallboard energy dissipation brace scarce capacity, and promotes wallboard heat insulation effect to greatest extent, reduces energy Source consumption.
To achieve the goals above, the technical solution adopted in the utility model are as follows:
It is built-in energy consumption steel pipe without heat bridge heat-insulation wall plate, mainly include plasterboard, side plate, balustrade exterior panelling, insulation board, bottom beam Plate, raising-plate, thin sheet metal, anchor frame mounting plate, energy consumption steel pipe, anchor frame cross rib, anchor frame longitudinal rib and foam concrete Deng,
It is built-in energy consumption steel pipe without in heat bridge heat-insulation wall plate, upper end is provided with raising-plate, and lower end is provided with bottom beam plate, the bottom of at Both side ends between beam slab and raising-plate are side plate respectively, and the front and back ends portion between bottom beam plate and raising-plate is respectively stone Cream plate, balustrade exterior panelling, plasterboard, side plate, balustrade exterior panelling, bottom beam plate and raising-plate surround wallboard outline border, and setting bubble wherein Foam concrete, the upper and lower and insulation board of side plate, energy consumption steel pipe flush, bottom beam plate, raising-plate left and right ends reach side plate Outer edge is simultaneously flush with it, bottom beam plate, raising-plate front end reach the outer edge of plasterboard and be flush with it, bottom beam plate, top The rear end of beam slab reaches the outer edge of balustrade exterior panelling and is flush with it, and lightweight gold is respectively provided on the inside of plasterboard, balustrade exterior panelling Belong to plate, anchor frame longitudinal rib is set on two thin sheet metals, is provided with two rows of insulation boards between two thin sheet metals, with row Between insulation board using being uniformly distributed, the insulation board between difference row is overlapped using interlaced, and vertical in anchor frame Anchor frame cross rib is arranged on rib insulation board is fixed, consumption is set between two insulation boards in the same anchor frame longitudinal rib Can steel pipe, anchor frame longitudinal rib and thin sheet metal junction are arranged anchor frame mounting plate, adjacent on the same thin sheet metal Anchor frame mounting plate uses spaced set.
Further, energy consumption steel pipe is made using low yield point steel plate.
Further, insulation board uses styrofoam or hard polyurethane foam board.
Further, bottom beam plate, raising-plate are fixed together using nail connection type and plasterboard, side plate, balustrade exterior panelling.
Further, balustrade exterior panelling uses OSB plate.
The utility model has the beneficial effects that overall coordination performance is good, energy-efficient performance is high, and installation operation is significant to be simplified, assembly Speed is fast, can use big component general assembly, and industrialization degree is higher, good economical benefit, and avoids environmental pollution, reduces A large amount of field operations are constructed by series, make it have good stress performance, and setting energy consumption steel pipe effectively increases wallboard Energy dissipation brace ability, and then increase the shock resistance of wallboard, using the interlaced arrangement architecture overlapped of two rows of insulation boards Design can effectively cut off heat bridge in wallboard, can avoid in wallboard the positions such as at non-heat preservation without using other heat preserving modes Heat bridge effect, the shortcomings that not only solving conventional wallboard energy dissipation brace scarce capacity, and promote wallboard heat preservation to greatest extent Effect reduces energy consumption.
Detailed description of the invention
Being described further without heat bridge heat-insulation wall plate to the built-in energy consumption steel pipe in the utility model with reference to the accompanying drawing:
Fig. 1 is the built-in energy consumption steel pipe of the utility model without heat bridge heat-insulation wall plate schematic elevation view.
Fig. 2 is the A-A diagrammatic cross-section of Fig. 1.
In figure: 1 is plasterboard;2 be side plate;3 be balustrade exterior panelling;4 be insulation board;5 be bottom beam plate;6 be raising-plate;7 are Thin sheet metal;8 be anchor frame mounting plate;9 be energy consumption steel pipe;10 be anchor frame cross rib;11 be anchor frame longitudinal rib;12 be foam Concrete.
Specific embodiment
In order to further illustrate the utility model, the utility model is retouched in detail with reference to the accompanying drawings and embodiments It states, but they cannot be interpreted as to the restriction to scope of protection of the utility model.
A kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate, as shown in Fig. 1 ~ Fig. 2, mainly include plasterboard 1, side plate 2, Balustrade exterior panelling 3, insulation board 4, bottom beam plate 5, raising-plate 6, thin sheet metal 7, anchor frame mounting plate 8, energy consumption steel pipe 9, anchor frame Cross rib 10, anchor frame longitudinal rib 11 and foam concrete 12 etc., it is built-in energy consumption steel pipe without in heat bridge heat-insulation wall plate, upper end is provided with Raising-plate 6, lower end are provided with bottom beam plate 5, and the both side ends between bottom beam plate 5 and raising-plate 6 are respectively side plate 2, in bottom beam Front and back ends portion between plate 5 and raising-plate 6 is respectively plasterboard 1, balustrade exterior panelling 3, plasterboard 1, side plate 2, balustrade exterior panelling 3, bottom Beam slab 5 and raising-plate 6 surround wallboard outline border, and foam concrete 12 is arranged wherein, the upper and lower and insulation board 4 of side plate 2, energy consumption Steel pipe 9 flushes, bottom beam plate 5, raising-plate 6 left and right ends reach the outer edge of side plate 2 and be flush with it, bottom beam plate 5, top beam The front end of plate 6 reaches the outer edge of plasterboard 1 and is flush with it, bottom beam plate 5, raising-plate 6 rear end reach balustrade exterior panelling 3 Outer edge and be flush with it, in plasterboard), be respectively provided with thin sheet metal 7 on the inside of balustrade exterior panelling 3, on two thin sheet metals 7 Anchor frame longitudinal rib 11 is set, two rows of insulation boards 4 are provided between two thin sheet metals 7, is used with the insulation board 4 between row It is uniformly distributed, the insulation board 4 between difference row is overlapped using interlaced, and anchor frame is arranged in anchor frame longitudinal rib 11 Insulation board 4 is fixed in cross rib 10, the setting energy consumption steel pipe 9 between two insulation boards 4 in the same anchor frame longitudinal rib 11, Anchor frame longitudinal rib 11 and 7 junction of thin sheet metal are arranged anchor frame mounting plate 8, adjacent anchor on the same thin sheet metal 7 Gu frame mounting plate 8 uses spaced set.
Further, energy consumption steel pipe 9 is made using low yield point steel plate.
Further, insulation board 4 uses styrofoam or hard polyurethane foam board.
Further, bottom beam plate 5, raising-plate 6 are fixed on using nail connection type and plasterboard 1, side plate 2, balustrade exterior panelling 3 Together.
Further, balustrade exterior panelling 3 uses OSB plate.
The above is only the preferred embodiment of the utility model, it is noted that for the common skill of the art For art personnel, without departing from the principle of this utility model, several improvements and modifications can also be made, these improve and Retouching also should be regarded as the protection scope of the utility model.

Claims (5)

1. a kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate, it is characterised in that: mainly include plasterboard (1), side plate (2), Balustrade exterior panelling (3), insulation board (4), bottom beam plate (5), raising-plate (6), thin sheet metal (7), anchor frame mounting plate (8), energy consumption Steel pipe (9), anchor frame cross rib (10), anchor frame longitudinal rib (11) and foam concrete (12), built-in energy consumption steel pipe are protected without heat bridge In warm wallboard, upper end is provided with raising-plate (6), and lower end is provided with bottom beam plate (5), between bottom beam plate (5) and raising-plate (6) Both side ends are divided into side plate (2), and the front and back ends portion between bottom beam plate (5) and raising-plate (6) is respectively plasterboard (1), exterior Plaque (3), plasterboard (1), side plate (2), balustrade exterior panelling (3), bottom beam plate (5) and raising-plate (6) surround wallboard outline border, and at it Middle setting foam concrete (12), the upper and lower and insulation board (4) of side plate (2), energy consumption steel pipe (9) flush, bottom beam plate (5), top beam The left and right ends of plate (6) reach the outer edge of side plate (2) and are flush with it, bottom beam plate (5), raising-plate (6) front end stretch To plasterboard (1) outer edge and be flush with it, bottom beam plate (5), raising-plate (6) rear end reach the outer of balustrade exterior panelling (3) Edge is simultaneously flush with it, and thin sheet metal (7) is respectively provided on the inside of plasterboard (1), balustrade exterior panelling (3), in two thin sheet metals (7) anchor frame longitudinal rib (11) are set on, are provided with two rows of insulation boards (4) between two thin sheet metals (7), between row Using being uniformly distributed, the insulation board (4) between difference row is overlapped insulation board (4) using interlaced, and vertical in anchor frame Anchor frame cross rib (10) are arranged on rib (11) insulation board (4) is fixed, two on the same anchor frame longitudinal rib (11) Setting energy consumption steel pipe (9) between insulation board (4), anchor frame longitudinal rib (11) and thin sheet metal (7) junction setting anchor frame are pacified Loading board (8), adjacent anchor frame mounting plate (8) uses spaced set on the same thin sheet metal (7).
2. a kind of built-in energy consumption steel pipe according to claim 1 without heat bridge heat-insulation wall plate, it is characterised in that: energy consumption steel pipe (9) it is made using low yield point steel plate.
3. a kind of built-in energy consumption steel pipe according to claim 1 without heat bridge heat-insulation wall plate, it is characterised in that: insulation board (4) styrofoam or hard polyurethane foam board are used.
4. a kind of built-in energy consumption steel pipe according to claim 1 without heat bridge heat-insulation wall plate, it is characterised in that: bottom beam plate (5), raising-plate (6) is fixed together using nail connection type and plasterboard (1), side plate (2), balustrade exterior panelling (3).
5. a kind of built-in energy consumption steel pipe according to claim 1 without heat bridge heat-insulation wall plate, it is characterised in that: balustrade exterior panelling (3) OSB plate is used.
CN201820791982.4U 2018-05-25 2018-05-25 A kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate Expired - Fee Related CN208441338U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820791982.4U CN208441338U (en) 2018-05-25 2018-05-25 A kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820791982.4U CN208441338U (en) 2018-05-25 2018-05-25 A kind of built-in energy consumption steel pipe without heat bridge heat-insulation wall plate

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113478895A (en) * 2021-06-15 2021-10-08 湖南诺方斯新材料有限公司 Engineering mould heat insulation plate with good pressure resistance and heat resistance

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113478895A (en) * 2021-06-15 2021-10-08 湖南诺方斯新材料有限公司 Engineering mould heat insulation plate with good pressure resistance and heat resistance

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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: 20190129

Termination date: 20200525