CN101570985B - Heat preservation constructing method of indoor wall - Google Patents

Heat preservation constructing method of indoor wall Download PDF

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Publication number
CN101570985B
CN101570985B CN2008100368770A CN200810036877A CN101570985B CN 101570985 B CN101570985 B CN 101570985B CN 2008100368770 A CN2008100368770 A CN 2008100368770A CN 200810036877 A CN200810036877 A CN 200810036877A CN 101570985 B CN101570985 B CN 101570985B
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indoor wall
heat preservation
indoor
wall
constructing method
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CN101570985A (en
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谢建华
谢建康
谢建明
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Shanghai Keli Macromolecule Material Co ltd
Zhejiang Shunjie Construction Group Co ltd
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SHANGHAI KELI MACROMOLECULE MATERIAL CO Ltd
ZHEJIANG SHUNJIE CONSTRUCTION GROUP CO Ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A30/00Adapting or protecting infrastructure or their operation
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/90Passive houses; Double facade technology

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Abstract

The invention provides a heat preservation constructing method of an indoor wall. In the constructing method, the surface of the whole indoor wall of a building is firstly flattened and is coated withconcrete mortar; a plastering agent is then coated on heated boards which are completely pasted on the whole surface of the indoor wall through the plastering agent; finishing mortar for crack resist ance and heat preservation is coated on the outside surfaces of the heated boards; fibre glass strengthened gridding cloth is then pressed on the finishing mortar; and finally, the finishing mortar for crack resistance and heat preservation is coated on the gridding cloth and is smoothly polished. Each room (chamber) of the building serves as a unit, and only the ultrathin heated boards of the indoor wall are completely pasted on the indoor wall, thus, the invention has the advantages that the construction is safe, the heat preservation effect and the energy-saving effect of the unit room are great, the needs of people in daily life can be satisfied, the heated boards are not influenced by weather environment, the damage and the desquamation of the heated boards are hard, the service life of the heated boards is prolonged, the maintenance cost is reduced, and the economic benefit is increased.

Description

Heat preservation constructing method of indoor wall
Technical field
The present invention relates to the building energy conservation heat insulation technology, more particularly, relate to a kind of heat preservation constructing method of indoor wall, this job practices is simple and convenient, can improve the indoor heat insulating energy-saving effect.
Background technology
Along with continuous growth of global energy consumption and global warming speed are obviously accelerated, make energy crisis and environmental problem become increasingly conspicuous.And in China, because the development of urban modernization construction and improving constantly of living standards of the people, people begin to pursue more comfortable building living environment, and winter heating, summer air-conditioning all need to consume a large amount of energy.At present, the total amount of China's building energy consumption rises year by year, accounted for 1/3rd of social total energy consumption, and the increase of building energy consumption has reached 1/4th to " contribution rate " of national greenhouse gas emission, it is imperative therefore to greatly develop and promote the building thermal-insulation energy-saving technology.
At present, the heat preserving mode of traditional building masonry wall has two kinds, and a kind of is exterior wall internal insulation, promptly adopts the warming plate of foam material to be fitted in by cement mortar on the inner surface of exterior wall of building.This method construction is comparatively easy and expense is also lower, but because no matter this method is for whole building or each room, the metope that relates to insulation is limited really, and the circular beam in building structure, beam column, partition wall and floor plates etc. are located, " the cold and hot bridge " that exists is a lot of, therefore, heat insulation effect is relatively poor, actual energy-conservation very limited, and because the warming plate that is adopted generally needs 3cm at least, not only reduce the inner space in room, nor be convenient to the interior trim decoration, therefore, exterior wall internal insulation is withdrawn from the market gradually.
Another kind is an external wall outer insulation at present comparatively commonly used, and the warming plate that promptly adopts the foam material also is fitted on the external surface of exterior wall of building by cement mortar, thereby in whole building is wrapped in, is used to solve the heat leak problem of body of wall.But, because this warming plate only is fitted in the exterior wall external surface, and positions, many places such as the door opening in building structure, lift port, stair and public passage can't be incubated, therefore, in actual use, exist a large amount of " cold and hot bridge ", influenced the heat insulation effect of whole building greatly, make this building only depend on the actual energy-conservation of external wall outer insulation can't reach standard-required at all, must increase warming plate thickness and adopt other energy-saving heat preserving measures to remedy and do not reach energy-conservation requirement, cost is huge.In addition, the thickness of the warming plate that is adopted needs 3cm even thicker at least, not only consumptive material is many, and outside the building construct in the wall outside, and particularly highrise building is very inconvenient, and there is certain potential safety hazard, because external wall insulation is subject to the weather environment influence, drum, cracking has very easily taken place, seep water and come off, and causes application life shorter, and, make maintenance cost higher along with the rising steadily of material cost.
Summary of the invention
, construct inconvenience and the warming plate fragile shortcoming that come off poor at the above-mentioned building heat preserving energy-saving effect that exists in the prior art, the purpose of this invention is to provide a kind of heat preservation constructing method of indoor wall, this job practices is simple and convenient, the good and warming plate difficult drop-off of indoor heat insulating energy-saving effect.
For achieving the above object, the present invention adopts following technical scheme:
The concrete steps of this heat preservation constructing method of indoor wall are as follows: A. carries out levelling on the indoor whole surface of wall of building, and evenly smears the last layer cement mortar; B. coating one layer binder on the indoor wall insulated board of special use sticks on warming plate on this layer cement mortar by cementing agent, and indoor whole surface of wall is sticked; C. the plastering mortar of coating one deck cracking resistance insulation on the lateral surface of this warming plate; D. on this layer plastering mortar, press and put layer of glass enhancing grid cloth; E. the face buttering of coating one deck cracking resistance insulation on this layer grid cloth, and treat that dry rubbing is smooth; In the middle of the indoor wall insulated board of described special use is the foam heat-insulating plate, foam heat-insulating plate both sides are provided with one and strengthen layers of kraft paper or and strengthen composite bed that layers of kraft paper is connected with a woven film layer as back-up coat, on the lateral surface that strengthens layers of kraft paper, also be provided with the heat resistanceheat resistant radiation coating respectively, the thickness of whole warming plate is 0.5cm or 1cm, also has several locating holes on the warming plate.
In step B, the piece between the described warming plate adopts the wedge type insulation bar filling of identical material, and piece is clogged closely knit with cementing agent.Described cementing agent adopts inorganic heat insulation mortar or has the polymer mortar of heat resistanceheat resistant radiation effect.In step B, the thickness range of coating cementing agent on the described warming plate is controlled at 4~5mm.
In step C, the thickness range of the plastering mortar of coating is controlled at 2~3mm.
In step e, the thickness range of the face buttering of coating is controlled at 1~2mm.
In steps A, indoor whole surface of wall levelling allows the difference of height of 2~3mm.
In technique scheme, heat preservation constructing method of indoor wall of the present invention carries out levelling for elder generation on the indoor whole surface of wall of building, and smears cement mortar; Coating cementing agent on warming plate is sticked indoor whole surface of wall by cementing agent with warming plate then; The plastering mortar of coating cracking resistance insulation on the lateral surface of this warming plate again; And then on plastering mortar, press and put glass fiber enhancing grid cloth; The face buttering of last coating cracking resistance insulation on grid cloth, and treat that dry rubbing is smooth.This job practices is a unit with building each indoor (room), only need ultra-thin indoor wall insulated board is sticked on this indoor wall, therefore construction safety is convenient, and indoor insulation, the energy-saving effect of unit is splendid, can satisfy the needs of people's daily life, and make warming plate not be subjected to the influence of weather environment, not fragile and come off, prolong application life, reduced maintenance cost, improved economic benefit.
Description of drawings
Fig. 1 is the schematic flow sheet of heat preservation constructing method of indoor wall of the present invention;
Fig. 2 adopts job practices of the present invention to carry out the cross-sectional schematic of internal wall insulation;
Fig. 3 is the structural representation of the indoor wall insulated board of job practices employing of the present invention;
Fig. 4 is the sectional view along A-A line among the figure;
Fig. 5 is the schematic diagram that adopts insulation in job practices of the present invention indoor and the contrast test of traditional external wall outer insulation.
The specific embodiment
Further specify technical scheme of the present invention below in conjunction with drawings and Examples.
Please in conjunction with Fig. 1, shown in Figure 2, heat preservation constructing method of indoor wall of the present invention is: the first step, each indoor (room) with building is unit, employing is to carrying out levelling on this indoor whole body of wall 1 surface, the permission difference of height of levelling is 2~3mm, and evenly smear 1: 3 cement mortar 2 of last layer, need to prove that at this above-mentioned indoor whole body of wall 1 comprises four sides body of wall and the end face body of wall in the room.Second step, (specification is 1200mm * 600mm or 600mm * 600mm) to adopt special-purpose indoor wall insulated board 10, also be noted that at this, another part name that above-mentioned warming plate 10 is being applied for for the applicant is called the patent of " indoor wall insulated board ", below the structure of this warming plate 10 is sketched: see also Fig. 3, shown in Figure 4, in the middle of this warming plate 10 is foam heat-insulating plate 11, foam heat-insulating plate 11 both sides are provided with one and strengthen layers of kraft paper or and strengthen composite bed that layers of kraft paper is connected with a woven film layer as back-up coat 11, on the lateral surface that strengthens layers of kraft paper, also be provided with heat resistanceheat resistant radiation coating 13 respectively, the thickness of whole warming plate 10 is 0.5cm or 1cm, also have several locating holes 14 on the warming plate 10, this warming plate 10 has thin thickness, in light weight, characteristics such as the big and high insulating effect of intensity; Coating one layer binder 3 on a side of this warming plate 10, this cementing agent 3 can adopt inorganic heat insulation mortar, also can adopt polymer mortar, and the thickness range of the cementing agent 3 of coating on this warming plate is controlled at 4~5mm with heat resistanceheat resistant radiation effect; Then the one side of this warming plate 10 by coating cementing agent 3 is fitted on this layer cement mortar 2 of indoor wall 1, the cementing agent 3 on the wall can hold to go in the locating hole 14, as " expansion post ", thereby warming plate 10 and body of wall 1 better is connected and fixed; Adopt again in the same way, stick this smooth warming plate 10 of one deck on indoor whole body of wall 1 surface.In the process of sticking warming plate 10,, can adopt the wedge type insulation bar (sheet) of same material to clog, and adopt cementing agent 3 piece to be clogged closely knit if during because of the irregular piece broad that occurs between indivedual warming plates 10 of warming plate 10.And when the paste heat-preserving plate, when running into electrical box, socket and pipeline through walls, can determine above-mentioned accessory position earlier, then warming plate is sheared, the hole of cutting is greater than about accessory periphery 10mm, after the warming plate stickup finishes, clog the slit that stays with insulation bar (sheet) equally, and the slit is clogged closely knit with cementing agent 3.And connect stubble between warming plate and adjacent metope and the ceiling, and boundary's lattice seam of 10mm should be set, can adopt the PU blowing agent to fill and strickling in the seam.The 3rd step, the plastering mortar 4 of coating one deck cracking resistance insulation on the lateral surface of this warming plate 10, and the thickness range of this plastering mortar 4 is controlled at 2~3mm.The 4th step, on this layer plastering mortar 4, be pressed into layer of glass and strengthen grid cloth 5, and every adjacent metope, window opening and door opening joint, grid cloth 5 all should reserve the lap width of 100mm, and the lap-joint of whole metope adjacent mesh cloth 5 requires grid cloth 5 overlap joints to be not less than 100mm.The 5th step, the face buttering 6 of coating one deck cracking resistance insulation on this layer grid cloth 5, and the thickness range of this face buttering 6 is controlled at 1~2mm, after buttering 6 is done face to face, adopt sand paper that this aspect buttering 6 is polished flat again, promptly finish heat preservation construction in the indoor wall, thereby on the face buttering 6 of this warming plate 10, can directly fit up (brushing veneer coating).
See also shown in Figure 5ly, Fig. 5 is the contrast test schematic diagram that adopts insulation in indoor behind this heat preservation constructing method of indoor wall and traditional external wall outer insulation.The test primary condition of two room A that are used for contrast test and B is all identical, be that house structure, door and window, air-conditioning are all identical, and the position that is provided with is also identical, room area is 20 square metres, adopt the plastic-steel double window, and the exterior wall in two rooms is all done the external wall outer insulation that thickness is 3cm.Different is that interior insulation is not done in the indoor of room A, and all adopts job practices of the present invention to paste one deck warming plate 10 on the medial surface of the indoor wall 1 of room B (comprising room end face body of wall).During test, the air-conditioning 6a, the 6b that start earlier two room A, B simultaneously heat, and the air-conditioning of two room A, B is set running temperature all be set to 25 degrees centigrade, simultaneously to the interior temperature of two room A, B with power consumption is measured and record, result of the test is consulted shown in the table 1 then:
Table 1 (this result of the test measures by Shanghai building designing institute)
Figure G200810036877001D00051
Test result shows, adopted the air-conditioning 6b rundown time first time of the room B of heat preservation constructing method of indoor wall of the present invention to shift to an earlier date 1 hour fully 40 minutes than room A, in the time of first day 14:45 to the second day 13:15 of test, the every operation of the air-conditioning 6a of room A 7 minutes, stall 3 minutes; And the every operation of air-conditioning 6b in the room B just stopped 4 minutes in 6 minutes, and behind second day 10:20, twice air- conditioning 6b operation 6 minutes appear altogether, 30 minutes phenomenons of stall, this shows, the air-conditioning 6b of room B under equal conditions, running frequency lowers greatly, total power consumption in 24 hours is saved actual consumption 32.6% than total little power consumption 10.3 degree of room A.Need to prove at this, if summer or winter indoor/outdoor temperature-difference bigger in, or two rooms are under the condition of making external wall outer insulation, room B is bigger than the energy consumption that room A saves, can be up to 40~50%.
In sum, heat preservation constructing method of indoor wall of the present invention is very simple and convenient, safe and reliable at indoor construction, cost is low, and can implement together in conjunction with interior decoration, warming plate 10 after the construction is not influenced by extraneous weather environment, avoided warming plate 10 impaired and come off, prolonged application life, importantly effectively raise indoor insulation, energy-saving effect, and by a kind of brand-new energy saving calculation mode, promptly each room (indoor) with building is a unit, and it is energy-conservation specifically to calculate reality, has eliminated the influence of " cold and hot bridge " problem in the various building structure, make the actual energy-conservation of each room can reach requirement fully
Those of ordinary skill in the art will be appreciated that, above embodiment is used for illustrating the present invention, and be not to be used as limitation of the invention, as long as in connotation scope of the present invention, all will drop in claims scope of the present invention variation, the modification of the above embodiment.

Claims (7)

1. a heat preservation constructing method of indoor wall is characterized in that,
The concrete steps of this job practices are as follows:
A. on the indoor whole surface of wall of building, carry out levelling, and evenly smear the last layer cement mortar;
B. coating one layer binder on the indoor wall insulated board of special use sticks on warming plate on this layer cement mortar by cementing agent, and indoor whole surface of wall is sticked;
C. the plastering mortar of coating one deck cracking resistance insulation on the lateral surface of this warming plate;
D. on this layer plastering mortar, press and put layer of glass enhancing grid cloth;
E. the face buttering of coating one deck cracking resistance insulation on this layer grid cloth, and treat that dry rubbing is smooth;
In the middle of the indoor wall insulated board of described special use is the foam heat-insulating plate, foam heat-insulating plate both sides are provided with one and strengthen layers of kraft paper or and strengthen composite bed that layers of kraft paper is connected with a woven film layer as back-up coat, on the lateral surface that strengthens layers of kraft paper, also be provided with the heat resistanceheat resistant radiation coating respectively, the thickness of whole warming plate is 0.5cm or 1cm, also has several locating holes on the warming plate.
2. heat preservation constructing method of indoor wall as claimed in claim 1 is characterized in that:
In step B, the piece between the described warming plate adopts the wedge type insulation bar filling of identical material, and piece is clogged closely knit with cementing agent.
3. heat preservation constructing method of indoor wall as claimed in claim 1 or 2 is characterized in that:
Described cementing agent adopts inorganic heat insulation mortar or has the polymer mortar of heat resistanceheat resistant radiation effect.
4. 1 heat preservation constructing method of indoor wall as claimed in claim is characterized in that:
In step B, the thickness range of coating cementing agent on the described warming plate is controlled at 4~5mm.
5. heat preservation constructing method of indoor wall as claimed in claim 1 is characterized in that,
In step C, the thickness range of the plastering mortar of coating is controlled at 2~3mm.
6. heat preservation constructing method of indoor wall as claimed in claim 1 is characterized in that:
In step e, the thickness range of the face buttering of coating is controlled at 1~2mm.
7. heat preservation constructing method of indoor wall as claimed in claim 1 is characterized in that:
In steps A, indoor whole surface of wall levelling allows the difference of height of 2~3mm.
CN2008100368770A 2008-04-30 2008-04-30 Heat preservation constructing method of indoor wall Expired - Fee Related CN101570985B (en)

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Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101886460B (en) * 2010-07-16 2012-01-04 江苏弘盛建设工程集团有限公司 Press polishing method of plastered mesh cloth of inner wall
CN102529205A (en) * 2011-11-22 2012-07-04 李金峰 Deep processing technology of insulation board
CN102888990A (en) * 2012-09-14 2013-01-23 上海大学 Method for constructing anti-cracking indoor heat preservation wall
CN103437453B (en) * 2013-08-09 2015-11-18 青岛科瑞新型环保材料有限公司 A kind of ultra-thin vacuum heat-insulating plate heat insulating inner wall thin-coat plaster body of wall
CN103437553B (en) * 2013-08-09 2016-01-27 青岛科瑞新型环保材料有限公司 A kind of construction technology of ultra-thin vacuum heat-insulating plate heat insulating inner wall thin-coat plaster body of wall
CN103758259A (en) * 2014-01-27 2014-04-30 张万峰 Seepage-proofing and fireproof outer wall external thermal insulation system and construction method thereof
CN104294925B (en) * 2014-09-15 2015-07-22 南阳师范学院 Inner heat-preserving system of building
CN112900660A (en) * 2021-01-19 2021-06-04 上海能循建筑节能科技有限公司 Construction process of external wall heat-insulation composite board

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Publication number Priority date Publication date Assignee Title
CN1095017C (en) * 1998-07-28 2002-11-27 黄振利 Crack-resistant heat-insulation wall and construction technology thereof
CN1458357A (en) * 2003-06-18 2003-11-26 北京振利高新技术公司 Anti-cracking inner thermal insulation wall and construction process
CN1587165A (en) * 2004-08-30 2005-03-02 刘荣洲 Construction method for polyphenyl particle composite wall heat insulation material
CN2908648Y (en) * 2006-04-07 2007-06-06 宁波维科置业有限公司 Thermal-insulation exposed wall of building
CN2911066Y (en) * 2006-05-18 2007-06-13 上海虞舜节能建材有限公司 Polyphenyl substance thermal insulation external wall

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1095017C (en) * 1998-07-28 2002-11-27 黄振利 Crack-resistant heat-insulation wall and construction technology thereof
CN1458357A (en) * 2003-06-18 2003-11-26 北京振利高新技术公司 Anti-cracking inner thermal insulation wall and construction process
CN1587165A (en) * 2004-08-30 2005-03-02 刘荣洲 Construction method for polyphenyl particle composite wall heat insulation material
CN2908648Y (en) * 2006-04-07 2007-06-06 宁波维科置业有限公司 Thermal-insulation exposed wall of building
CN2911066Y (en) * 2006-05-18 2007-06-13 上海虞舜节能建材有限公司 Polyphenyl substance thermal insulation external wall

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