ASTM E1643-2009 Standard Practice for Selection Design Installation and Inspection of Water Vapor Retarders Used in Contact with Earth or Granular Fill Under Concrete Slabs.pdf
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1、Designation: E 1643 09Standard Practice forSelection, Design, Installation, and Inspection of WaterVapor Retarders Used in Contact with Earth or Granular FillUnder Concrete Slabs1This standard is issued under the fixed designation E 1643; the number immediately following the designation indicates th
2、e year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice covers procedures for selecting, des
3、igning,installing, and inspecting flexible, prefabricated sheet mem-branes in contact with earth or granular fill used as vaporretarders under concrete slabs.1.2 Conditions subject to frost and either heave or hydro-static pressure, or both, are beyond the scope of this practice.Vapor retarders are
4、not intended to provide a waterproofingfunction.1.3 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematicalconversions to SI units that are provided for information onlyand are not considered standard.1.4 This standard does not purport to
5、 address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E 1745 Sp
6、ecification for Plastic Water Vapor RetardersUsed in Contact with Soil or Granular Fill under ConcreteSlabsE 1993 Specification for Bituminous Water Vapor RetardersUsed in Contact with Soil or Granular Fill Under ConcreteSlabsF 710 Practice for Preparing Concrete Floors to ReceiveResilient Flooring2
7、.2 Other Standard:3ACI 302.2R06 Guide for Concrete Slabs that ReceiveMoisture-Sensitive Flooring Materials3. Significance and Use3.1 Vapor retarders provide a method of limiting watervapor transmission and capillary transport of water upwardthrough concrete slabs on grade, which can adversely affect
8、floor finishes and interior humidity levels.3.2 Adverse impacts include adhesion loss, warping, peel-ing, and unacceptable appearance of resilient flooring; deterio-ration of adhesives, ripping or separation of seams, and airbubbles or efflorescence beneath seamed, continuous flooring;damage to flat
9、 electrical cable systems, buckling of carpet andcarpet tiles, offensive odors, growth of fungi, and undesiredincreases to interior humidity levels.4. Manufacturers Recommendations4.1 Where inconsistencies occur between this practice andthe manufacturers instructions, conform to the manufacturersins
10、tructions for installation of vapor retarder.5. Material, Design, and Construction5.1 See ACI 302.2R06 for material, design, and construc-tion recommendations.5.2 See Specifications E 1745 and E 1993 for vapor retarderspecifications.5.3 Vapor Retarder Material SelectionThe following cri-teria should
11、 be considered when selecting a vapor retardermaterial.5.3.1 Local building code and regulatory requirements.5.3.1.1 Comply with local building code and regulatoryrequirements as a minimum consideration.5.3.2 The water-vapor permeance of the vapor retardermaterial.1This practice is under the jurisdi
12、ction of ASTM Committee E06 on Perfor-mance of Buildings and is the direct responsibility of Subcommittee E06.21 onServiceability.Current edition approved Feb. 15, 2009. Published February 2009. Originallyapproved in 1994. Last previous edition approved in 2005 as E 1643 98 (05).2For referenced ASTM
13、 standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from American Concrete Institute (ACI), P.O. Box 9094, FarmingtonHills
14、, MI 48333-9094, http:/www.concrete.org.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5.3.2.1 The water vapor permeance of the vapor retardermaterial shall be at such a rate so that adverse impacts to floorfinishes and coatings do
15、not occur5.3.2.2 Refer to X1.1 for discussion on water vapor trans-mission rate of vapor retarder.5.3.2.3 The perm rating determined under these criteriashall supersede that in references 5.2 should this value be lessthan required under references in 5.2.5.3.3 The types and amounts of deleterious co
16、mpounds inthe soil on the building site.5.3.3.1 Review building site soil analyses for deleteriousmaterials and compounds and select a vapor retarder materialthat will withstand exposure to such deleterious materials orcompounds.5.3.4 The tensile strength and puncture resistance of thevapor retarder
17、 material.5.3.4.1 Select a vapor retarder material capable of with-standing potential construction site damage.5.3.5 The type of base material on which the vapor retarderis to be installed.5.3.5.1 Select vapor retarder material capable of withstand-ing tear or puncture damage due to the type, gradat
18、ion, andtexture of the base material to be installed below the material.Prepare base material to minimize risk of puncture, forexample, by rolling or compacting.5.3.6 The expected exposure of the vapor retarder to ultra-violet rays.5.3.6.1 Assess expected exposure of the vapor retardermaterial to ul
19、tra violet rays and select a material capable ofwithstanding such exposure and maintain its capability toperform its intended function.6. Placement6.1 Level and compact base material.6.2 Install vapor retarder material with the longest dimen-sion parallel with the direction of concrete pour.6.3 Face
20、 laps away from the expected direction of theconcrete pour whenever possible.6.4 Extend vapor retarder over footings and seal to founda-tion wall or grade beam at an elevation consistent with the topof the slab or terminate at impediments such as water stops ordowels. Seal around penetrations such a
21、s utilities and columnsin order to create a monolithic membrane between the surfaceof the slab and moisture sources below the slab as well as at theslab perimeter.6.5 Lap joints minimum 6 in. (150 mm), or as instructed bythe manufacturer, and seal laps in accordance with the manu-facturers recommend
22、ations.6.6 Extend vapor retarder over the tops of pile caps andgrade beams to a distance acceptable to the structural engineerand terminate as recommended by the manufacturer.7. Protection7.1 Take precautions to protect vapor retarder from damageduring installation of reinforcing steel, utilities an
23、d concrete.7.2 Use reinforcing bar supports with base sections thatminimize the potential for puncture of the vapor retarder.7.3 Avoid use of stakes driven through the vapor retarder.7.4 Refer to ACI 302.2R06 for discussion of aggregate forprotection of vapor retarder, including the risks of install
24、ingaggregate fill above a vapor retarder that can act as a reservoirfor water.8. Inspection8.1 Inspect and mark all areas of damage and insufficientinstallation of the vapor retarder sufficiently in advance ofconcrete placement such that deficiencies may be correctedbefore concrete is placed.9. Repa
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