CN102677815A - Four-row-hole self-insulation sound insulation blockwork - Google Patents

Four-row-hole self-insulation sound insulation blockwork Download PDF

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Publication number
CN102677815A
CN102677815A CN201110061337XA CN201110061337A CN102677815A CN 102677815 A CN102677815 A CN 102677815A CN 201110061337X A CN201110061337X A CN 201110061337XA CN 201110061337 A CN201110061337 A CN 201110061337A CN 102677815 A CN102677815 A CN 102677815A
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China
Prior art keywords
insulation
building blocks
building
self
sound insulation
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Pending
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CN201110061337XA
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Chinese (zh)
Inventor
彭昊
吕爱华
崔运美
彭冠华
高宏远
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Individual
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Individual
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Priority to CN201110061337XA priority Critical patent/CN102677815A/en
Publication of CN102677815A publication Critical patent/CN102677815A/en
Pending legal-status Critical Current

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Abstract

A four-row-hole self-insulation sound insulation blockwork is mainly composed of self-insulation sound insulation building blocks, thermal mortar and anti-crack mortar. Each four-row eight-hole self-insulation sound insulation building block is composed of building blocks with eight through holes in four rows and two indirect connection thermal bridges, four insulation materials placed in the holes and four insulation key panels, wherein four insulation are used for pre-preparing the insulation materials in a plan, insulation key holes are respectively formed when four outside-opened side holes and adjacent building blocks are constructed, the insulation key panels are inserted in the hole, each of the two indirect connection thermal bridges is composed of side ribs with seven straight parts and six bending parts, a convex beam column of the building blocks is not larger than 1/4 of the thickness of the building blocks during use, and each layer is constructed in stubble pressing and hole aligning modes. The thermal mortar is paved and filled at the transverse and the vertical seams of the building blocks, compression strength of the thermal mortar is larger than that of a wall, and the value is converted according to actual bearing wall rib area of the building blocks. The anti-crack mortar is used for the outer wall face of the building blocks, anti-cracking wiping face of the beam column insulating layer, and the drying shrinkage value of the anti-cracking wiping face is smaller than that of the building blocks and the beam column insulating layer.

Description

Four round self-heat conserving sound insulation blockworks
Technical field:
The present invention relates to building energy conservation, is a kind of seamless self-heat conserving sound insulation of four rounds, two heat bridges blockwork that need not the secondary insulation.
Background technology:
30% of the total power consumption of China's building energy consumption account society at present; Along with its building energy consumption of fast development of town and country construction will be broken through 50% of the total power consumption of society; And the energy consumption of building enclosure wall accounts for 30% of building total energy consumption; The external-wall external-insulation energy-saving mode of public and civil building 50%, 65% fractional energy savings of generally carrying out has now produced the exterior trim pull-up major accidents such as fire takes place frequently that fall; It will be argued that and research and develop the not only power save mode of instead external wall outer insulation of self-insulation wall material energetically, and should be as the major fields that improve building energy conservation index energy-saving and emission-reduction low-carbon economy.The sandwich heat preservation building block CN2013399266Y that I have authorized; High thermal resistance assembled building blocks CN201343812Y; Primary and secondary walling body of wall CN201649351U; Utility model patents such as heat and sound insulated wall CN201635213U; Though each has something to recommend him but not enough below existing: the one, be separate component as the building block of retaining wall major part; It structurally can not realize seamless link with adjacent block, and the perps mortar is difficult to reach the optimum efficiency to water, vapour, temperature, sound sealing; The 2nd, the heat bridge that does not reach building block thermal transmittance optimum value and promptly influence the principal element of block insulation also can reduce.
Summary of the invention:
The object of the invention one is the materials for wall that a kind of thorough replacement external-wall external-insulation energy-saving mode of exploitation realizes body of wall and same life-span of exterior trim, no disaster hidden-trouble; The 2nd, invent a kind of meet the existing norm of construction in various places and thickness of wall body and can reach energy-conservation limit value only have two heat bridge adjacent block can realize the universal architecture of seamless link; The 3rd, the kind through adjustment building block, heat insulating material and the parameter of relevant heat preservation and soundproof realize the optimum efficiency of building block and wall thermal insulating, sound insulation, and fractional energy savings breaks through 75%, strives 83%, 88%, catches up with and surpasses the world's advanced levels.The present invention is achieved in that four round self-heat conserving sound insulation blockworks mainly are made up of four round self-heat conserving sound insulation building blocks, thermal insulation mortar, anticracking grout.Four row's octal self-heat conserving sound insulation building blocks are made up of the building-block of two non-straight-through heat bridges of four eight through holes of row and four blocks of heat insulating materials and the four blocks of insulation key plates that are positioned in the hole; Wherein, Four insulation holes are at the factory presets heat insulating material; Four lateral opening insulation keyholes that when building by laying bricks or stones with adjacent block, formed respectively that the outside is open insert insulation key plate in the hole, two non-straight-through heat bridges are made up of seven straight six curved limit ribs; The evagination beam column was not more than 1/4 block thickness when building block was used, and each lamination stubble is built by laying bricks or stones the hole.Thermal insulation mortar building block anyhow the Man Pu of seam place, irritate real, thermal insulation mortar compressive strength is greater than body of wall compressive strength, its value is converted by the actual bearing partition finned surface of building block is long-pending.Anticracking grout is used for the anticracking of building block wall face, beam column insulation layer wipes one's face, and its drying shrinkage value is less than the drying shrinkage value of building block and beam column insulation layer.
Description of drawings:
1 is two seven straight six curved formed two heat bridges of limit rib in the Figure of description; The 2nd, block insulation hole and heat insulating material; The 3rd, the lateral opening and insulation key plate of building block.
The specific embodiment:
Building requirements: 65% fractional energy savings, 340 infilled walls, wall heat transfer coefficient K≤0.4, thermal resistance R>=2.5
Eight dislocation of walling unit and parameter: block structure 39,0*3,40*,190 four rows pore structure; Wall rib thickness 29mm; In block material float stone concrete, add additive coefficient of thermal conductivity is adjusted to below 0.42, compression strength of building block 3.5Mpa, center heat insulating material and insulation key plate are selected the polyamine fat plate of coefficient of thermal conductivity≤0.024 for use; This building block sows anyhow to grout along building block with the M5 thermal insulation mortar and builds, and each 20mm ordinary mortar of interior exterior wall and anticracking grout are wiped one's face.The theoretical thermal resistance value of this building block and body of wall is 4.6 (over dry) measured value R=3.91 (moisture content and the influence of mortar slit), and this value is high by 56% than wall heat resistance design load 2.5, and its body of wall fractional energy savings is higher than 75%.

Claims (4)

1. a round self-heat conserving sound insulation blockwork is characterized in that: this body of wall mainly is made up of four round self-heat conserving sound insulation building blocks, thermal insulation mortar, anticracking grout.
2. four round self-heat conserving sound insulation blockworks according to claim 1 is characterized in that: four round self-heat conserving sound insulation building blocks are made up of the building-block of two non-straight-through heat bridges of four eight through holes of row and four blocks of heat insulating materials and the four blocks of insulation key plates that are positioned in the hole; Wherein, Four insulation holes are at the factory presets heat insulating material; Four lateral opening insulation keyholes that when building by laying bricks or stones with adjacent block, formed respectively that the outside is open insert insulation key plate in the hole, two non-straight-through heat bridges are made up of seven straight six curved limit ribs; The evagination beam column was not more than 1/4 block thickness when building block was used, and each lamination stubble is built by laying bricks or stones the hole.
3. four row's octal self-heat conserving sound insulation blockworks according to claim 1 is characterized in that: thermal insulation mortar building block anyhow the Man Pu of seam place, irritate real, thermal insulation mortar compressive strength is greater than body of wall compressive strength, its value is converted by the actual bearing partition finned surface of building block is long-pending.
4. four row's octal self-heat conserving sound insulation blockworks according to claim 1 is characterized in that: anticracking grout is used for the anticracking of building block wall face, beam column insulation layer wipes one's face, and its drying shrinkage value is less than the drying shrinkage value of building block and beam column insulation layer.
CN201110061337XA 2011-03-07 2011-03-07 Four-row-hole self-insulation sound insulation blockwork Pending CN102677815A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201110061337XA CN102677815A (en) 2011-03-07 2011-03-07 Four-row-hole self-insulation sound insulation blockwork

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201110061337XA CN102677815A (en) 2011-03-07 2011-03-07 Four-row-hole self-insulation sound insulation blockwork

Publications (1)

Publication Number Publication Date
CN102677815A true CN102677815A (en) 2012-09-19

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Application Number Title Priority Date Filing Date
CN201110061337XA Pending CN102677815A (en) 2011-03-07 2011-03-07 Four-row-hole self-insulation sound insulation blockwork

Country Status (1)

Country Link
CN (1) CN102677815A (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201109959Y (en) * 2007-08-28 2008-09-03 吴振江 High heat preserving light aggregate wall building block
EP1988228A2 (en) * 2007-05-03 2008-11-05 Matthias Rimmele Building blocks and building systems with hydrophobic, microporous heat insulation
CN201258550Y (en) * 2008-09-20 2009-06-17 徐永芳 Energy-conserving thermal insulation building block
CN201635213U (en) * 2009-05-04 2010-11-17 彭昊 Heat-insulating and sound-proof wall body

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1988228A2 (en) * 2007-05-03 2008-11-05 Matthias Rimmele Building blocks and building systems with hydrophobic, microporous heat insulation
CN201109959Y (en) * 2007-08-28 2008-09-03 吴振江 High heat preserving light aggregate wall building block
CN201258550Y (en) * 2008-09-20 2009-06-17 徐永芳 Energy-conserving thermal insulation building block
CN201635213U (en) * 2009-05-04 2010-11-17 彭昊 Heat-insulating and sound-proof wall body

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Application publication date: 20120919