CN205242699U - Cast -in -place composite wall self preservation temperature system of assembled - Google Patents
Cast -in -place composite wall self preservation temperature system of assembled Download PDFInfo
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- CN205242699U CN205242699U CN201521096910.0U CN201521096910U CN205242699U CN 205242699 U CN205242699 U CN 205242699U CN 201521096910 U CN201521096910 U CN 201521096910U CN 205242699 U CN205242699 U CN 205242699U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
- Y02A30/24—Structural elements or technologies for improving thermal insulation
- Y02A30/244—Structural elements or technologies for improving thermal insulation using natural or recycled building materials, e.g. straw, wool, clay or used tires
Abstract
The utility model discloses a cast -in -place composite wall self preservation temperature system of assembled, including composite wall, frame post and frame roof beam, composite wall includes that cast -in -place wall body of assembled and calculon build the layer by laying bricks or stones, the cast -in -place wall body of assembled includes two first heat preservations of interior external symmetry setting and lies in two cast in situ concrete layers between the first heat preservation, is provided with drawknot muscle and anchor assembly in the cast -in -place wall body of assembled, first heat preservation is formed by the upper and lower assembly of special -shaped heated board, the cast in situ concrete layer is directly pour in the cavity that two first heat preservations and frame post are constituteed by common concrete or foaming concrete to form, the outside that layer, frame post and frame roof beam were built by laying bricks or stones to the calculon all is provided with the second heat preservation, and the lateral surface of second heat preservation and composite wall's inside and outside both sides face all are provided with the coating mortar layer. The utility model discloses on guaranteeing structural strength's basis, realized the self preservation temperature effect of system, a large amount of time limits for a project and construction cost have still been saved to the while.
Description
Technical field
The utility model belongs to technical field of building construction, is specifically related to the cast-in-place combined wall Self-thermal-insulation System of a kind of assembled.
Background technology
Building energy consumption occupies significant proportion in social total energy consumption, along with the continuous sternness of energy-conservation situation, the requirement of building energy conservation is improved constantly. In order to improve the heat insulation effect of wall system, realize the self-heat conserving function of wall system, need to be incubated processing to body of wall and concrete frame. Tradition insulation way is after building wall completes, and carries out outer insulation processing at concrete frame and wall outer side, realizes heat insulation function by pasting the methods such as styrofoam or rock cotton board. The heat preserving method that wall system is carried out to outer insulation processing need to just can carry out after building wall completes, not only time-consuming, and often occurs the quality problems such as warming plate comes off.
Utility model content
Based on the deficiencies in the prior art, the utility model provides a kind of assembled cast-in-place combined wall Self-thermal-insulation System.
To achieve these goals, the technical solution adopted in the utility model is:
The cast-in-place combined wall Self-thermal-insulation System of a kind of assembled, comprise combined wall, the arranged on left and right sides of combined wall is provided with frame column, the upper end of combined wall is provided with Vierendeel girder, described combined wall comprises that assembled cast-in-situ wall and calculon build layer by laying bricks or stones, and described calculon is built layer by laying bricks or stones between assembled cast-in-situ wall and Vierendeel girder; Described assembled cast-in-situ wall comprises inside and outside symmetrically arranged two the first heat-insulation layers and the cast-in-place concrete layer between two the first heat-insulation layers, between two the first heat-insulation layers, be provided with some the first tension rib and anchoring pieces in order to reinforce, described the first tension rib passes cast-in-place concrete layer and two the first heat-insulation layers, and fixes by anchoring piece;
The outside that calculon is built layer, frame column and Vierendeel girder by laying bricks or stones is provided with the second heat-insulation layer, the lateral surface of described the second heat-insulation layer is mutually concordant with the lateral surface of combined wall, and the inside and outside two sides of the lateral surface of the second heat-insulation layer and combined wall are provided with the decorative mortar layer in order to protection;
Described the first heat-insulation layer is formed by the upper and lower assembling of deformed thermal-insulating plate, and the upper and lower end face correspondence of described deformed thermal-insulating plate is stairstepping, and deformed thermal-insulating plate is provided with the through hole passing for the first tension rib; Described cast-in-place concrete layer is directly built and is formed in the cavity that two the first heat-insulation layers and frame column form by normal concrete or foamed concrete, in cast-in-place concrete layer, be provided with the second tension rib of level, the left and right two ends of described the second tension rib are fixedly connected with frame column respectively.
Preferably, described the second heat-insulation layer is the one in rock cotton board, styrofoam and polyurethane sheet.
Preferably, described decorative mortar layer comprises anticracking grout layer and is positioned at the alkali resistant glass fibre open weave cloth of anticracking grout layer inside.
Preferably, described deformed thermal-insulating intralamellar part is provided with reinforced mesh.
The utility model can play effective protection, cracking resistance effect to the first heat-insulation layer and the second heat-insulation layer by decorative mortar layer; The first heat-insulation layer not only has insulation effect, can also replace formwork for placing, has saved the operation of dismounting template, has saved the engineering time, has reduced labour intensity; In addition, when concrete cast-in-situ, between concrete layer and warming plate, bond without use binding agent, and heat-insulation layer adopts deformed thermal-insulating plate to be assembled, reinforce through tension rib and anchoring piece again, avoided heat-insulation layer to come off, improve body of wall shock resistance and structural stability. The utility model, ensureing, on the basis of structural strength, to have realized the self-heat conserving effect of system, has also been saved a large amount of durations and construction cost simultaneously.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the cross sectional representation of assembled cast-in-situ wall in Fig. 1;
Fig. 3 is the stereogram of the first heat-insulation layer in Fig. 2;
Fig. 4 is the stereogram of deformed thermal-insulating plate in Fig. 3.
Detailed description of the invention
As shown in Fig. 1 ~ 4, the cast-in-place combined wall Self-thermal-insulation System of a kind of assembled, comprises by assembled cast-in-situ wall 3 and calculon and builds layer 4 combined wall forming by laying bricks or stones, the arranged on left and right sides of combined wall is provided with frame column 1, and the upper end of combined wall is provided with Vierendeel girder 2. It is between assembled cast-in-situ wall 3 and Vierendeel girder 2 that described calculon is built layer 4 by laying bricks or stones, and according to the distance between assembled cast-in-situ wall 3 and Vierendeel girder, selects undersized autoclave aerated concrete building block to build by laying bricks or stones and form. The outside that calculon is built layer 4, frame column 1 and Vierendeel girder 2 by laying bricks or stones is provided with the second heat-insulation layer 5, described second lateral surface of heat-insulation layer 5 and the lateral surface of combined wall are mutually concordant, and the inside and outside two sides of the lateral surface of the second heat-insulation layer 5 and combined wall are provided with the decorative mortar layer 6 in order to protection. Described assembled cast-in-situ wall 3 comprises inside and outside symmetrically arranged two the first heat-insulation layers 7 and the cast-in-place concrete layer 8 between two the first heat-insulation layers 7, between two the first heat-insulation layers 7, be provided with some the first tension rib 9 and anchoring pieces 10 in order to reinforce, described the first tension rib 9 is through cast-in-place concrete layer 8 and two the first heat-insulation layers 7, and it is fixing to pass through anchoring piece 10; Described cast-in-place concrete layer 8 is directly built and is formed in the cavity that two the first heat-insulation layers 7 and frame column 1 form by normal concrete or foamed concrete, the second tension rib 11 that is provided with level in cast-in-place concrete layer, the left and right two ends of described the second tension rib 11 are fixedly connected with frame column 1 respectively. Described the first heat-insulation layer 7 is formed by the upper and lower assembling of deformed thermal-insulating plate 12, and the upper and lower end face correspondence of described deformed thermal-insulating plate 12 is stairstepping, and deformed thermal-insulating plate 12 is provided with the through hole 13 passing for the first tension rib 9.
Wherein, described deformed thermal-insulating plate 12 inside are provided with reinforced mesh; Described the second heat-insulation layer 5 is selected the one in the fire prevention of A level rock cotton board, styrofoam and polyurethane sheet. Described decorative mortar layer 6 comprises anticracking grout layer and is positioned at the alkali resistant glass fibre open weave cloth of anticracking grout layer inside, when Specific construction, first smear one deck anticracking grout, then be pressed into alkali resistant glass fibre open weave cloth, smear again afterwards one deck anticracking grout, effectively realize waterproof, the cracking resistance safeguard function of Self-thermal-insulation System.
The utility model is not restricted to the described embodiments; that in above-described embodiment and description, describes just illustrates principle of the present utility model; under the prerequisite that does not depart from the utility model spirit and scope, the utility model also has various changes and modifications, and these changes and improvements all fall within the scope of claimed the utility model.
Claims (4)
1. the cast-in-place combined wall Self-thermal-insulation System of assembled, comprise combined wall, the arranged on left and right sides of combined wall is provided with frame column, the upper end of combined wall is provided with Vierendeel girder, it is characterized in that: described combined wall comprises that assembled cast-in-situ wall and calculon build layer by laying bricks or stones, described calculon is built layer by laying bricks or stones between assembled cast-in-situ wall and Vierendeel girder; Described assembled cast-in-situ wall comprises inside and outside symmetrically arranged two the first heat-insulation layers and the cast-in-place concrete layer between two the first heat-insulation layers, between two the first heat-insulation layers, be provided with some the first tension rib and anchoring pieces in order to reinforce, described the first tension rib passes cast-in-place concrete layer and two the first heat-insulation layers, and fixes by anchoring piece;
The outside that calculon is built layer, frame column and Vierendeel girder by laying bricks or stones is provided with the second heat-insulation layer, the lateral surface of described the second heat-insulation layer is mutually concordant with the lateral surface of combined wall, and the inside and outside two sides of the lateral surface of the second heat-insulation layer and combined wall are provided with the decorative mortar layer in order to protection;
Described the first heat-insulation layer is formed by the upper and lower assembling of deformed thermal-insulating plate, and the upper and lower end face correspondence of described deformed thermal-insulating plate is stairstepping, and deformed thermal-insulating plate is provided with the through hole passing for the first tension rib; Described cast-in-place concrete layer is directly built and is formed in the cavity that two the first heat-insulation layers and frame column form by normal concrete or foamed concrete, in cast-in-place concrete layer, be provided with the second tension rib of level, the left and right two ends of described the second tension rib are fixedly connected with frame column respectively.
2. the cast-in-place combined wall Self-thermal-insulation System of assembled according to claim 1, is characterized in that: described the second heat-insulation layer is the one in rock cotton board, styrofoam and polyurethane sheet.
3. the cast-in-place combined wall Self-thermal-insulation System of assembled according to claim 1, is characterized in that: described decorative mortar layer comprises anticracking grout layer and is positioned at the alkali resistant glass fibre open weave cloth of anticracking grout layer inside.
4. the cast-in-place combined wall Self-thermal-insulation System of assembled according to claim 1, is characterized in that: described deformed thermal-insulating intralamellar part is provided with reinforced mesh.
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CN201521096910.0U CN205242699U (en) | 2015-12-28 | 2015-12-28 | Cast -in -place composite wall self preservation temperature system of assembled |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106193292A (en) * | 2016-07-16 | 2016-12-07 | 江南大学 | A kind of steel frame assembled integral reinforced concrete shear wall structure system |
CN107190873A (en) * | 2017-07-28 | 2017-09-22 | 广州大学 | One kind building surface recombination heat-insulation layer and its installation method |
-
2015
- 2015-12-28 CN CN201521096910.0U patent/CN205242699U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106193292A (en) * | 2016-07-16 | 2016-12-07 | 江南大学 | A kind of steel frame assembled integral reinforced concrete shear wall structure system |
CN107190873A (en) * | 2017-07-28 | 2017-09-22 | 广州大学 | One kind building surface recombination heat-insulation layer and its installation method |
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