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ASTM F 2873 : 2018

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by
superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Practice for the Installation of Self-Leveling Underlayment and the Preparation of Surface to Receive Resilient Flooring

Available format(s)

Hardcopy , PDF

Superseded date

08-08-2020

Language(s)

English

Published date

07-15-2018

1.1This practice covers the installation of self-leveling underlayments, which may include a priming system, over solid wood, wood structural panel subfloors, over concrete, and over certain solidly bonded existing flooring systems such as epoxy floors, ceramic and natural stone tiles, terrazzo, metal subfloors and foils such as steel, copper and lead, solidly bonded patching and other leveling materials as well as properly prepared non water-soluble adhesive residues as recommended by the underlayment manufacturer. This practice also covers the preparation of the self-leveling underlayment’s surface prior to the installation of resilient flooring.

1.2This practice points out the factors that are required to be controlled while installing a self-leveling underlayment to be used as a substrate for resilient flooring.

1.3This practice does not cover the structural adequacy of the subfloor. The structural integrity of assemblies is governed by local building codes and may be superseded by the resilient flooring manufacturer's and the self-leveling underlayment manufacturer’s requirements.

1.4This practice does not supersede the self-leveling underlayment manufacturer’s, adhesive manufacturer’s or resilient flooring manufacturer’s written instructions. Consult the individual manufacturer for specific recommendations.

1.5Some self-leveling underlayments are not suitable for use on concrete slabs on or below grade due to potential moisture problems arising from moisture intrusion. However, most of the self-leveling underlayments may be suitable for use on and below grade if an adequate and effective vapor retarder or vapor barrier is present directly beneath the concrete slab or an effective moisture remediation system has been installed beneath the surface of the self-leveling underlayment. Consult the manufacturer of the self-leveling underlayment and flooring system for specific recommendations.

1.6The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.

1.7This practice does purport to address the necessity for or the safe or correct removal of asbestos containing materials. Breathing of asbestos dust is hazardous. Asbestos and asbestos products present demonstrated health risks for users and for those with whom they come into contact. In addition to other precautions, when working with asbestos-cement products, minimize the dust that results. For information on the safe use of chrysoltile asbestos, refer to “Safe Use of Chrysotile Asbestos: A Manual on Preventive and Control Measures.”2

1.8This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.

1.9This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Committee
F 06
DocumentType
Standard Practice
Pages
5
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

ASTM F 1869 : 2009 Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 1869 : 1998 Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 2170 : 2018 Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM F 2170 : 2016 Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM F 2170 : 2016 : REV B Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM F 1869 : 2010 Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 1869 : 2016 Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 1869 : 2003 Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 1869 : 2004 Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 1482 : 2004 : R2009 : EDT 1 Standard Practice for Installation and Preparation of Panel Type Underlayments to Receive Resilient Flooring
ASTM F 2170 : 2016 : REV A Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM C 1583 : 2004 Standard Test Method for Tensile Strength of Concrete Surfaces and the Bond Strength or Tensile Strength of Concrete Repair and Overlay Materials by Direct Tension (Pull-off Method)
ASTM F 2170 : 2002 Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using <bdit> in situ</bdit> Probes
ASTM F 1482 : 2015 Standard Practice for Installation and Preparation of Panel Type Underlayments to Receive Resilient Flooring
ASTM C 1708 : 2011 Standard Test Methods for Self-leveling Mortars Containing Hydraulic Cements
ASTM F 1869 : 2016 : REV A Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 2170 : 2009 Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using <bdit> in situ</bdit> Probes
ASTM F 2170 : 2011 Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM F 1869 : 2011 Standard Test Method for Measuring Moisture Vapor Emission Rate of Concrete Subfloor Using Anhydrous Calcium Chloride
ASTM F 2170 : 2017 Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM F 1482 : 2004 Standard Practice for Installation and Preparation of Panel Type Underlayments to Receive Resilient Flooring
ASTM F 2170 : 2019 Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM F 1482 : 2003 Standard Practice for Installation and Preparation of Panel Type Underlayments to Receive Resilient Flooring
ASTM F 2170 : 2019 : REV A Standard Test Method for Determining Relative Humidity in Concrete Floor Slabs Using in situ Probes
ASTM C 1708 : 2012 Standard Test Methods for Self-leveling Mortars Containing Hydraulic Cements
ASTM F 1482 : 1994 : REV A Standard Guide to Wood Underlayment Products Available for Use Under Resilient Flooring

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