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ASTM C 553 : 2013(R2019)

Current

Current

The latest, up-to-date edition.

Standard Specification for Mineral Fiber Blanket Thermal Insulation for Commercial and Industrial Applications

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-10-2019

1.1This specification covers the classification, composition, physical properties, and dimensions of mineral fiber (rock, slag, or glass) blanket intended for use as thermal insulation on surfaces operating at temperatures between 0°F (–18°C) and 1200°F (649°C). For specific applications, the actual temperature limits shall be agreed upon between the supplier and the purchaser.

1.2The orientation of the fibers within the blanket is primarily parallel to the principal surface (face). This specification does not cover fabricated pipe and tank wrap insulation where the insulation has been cut and fabricated to provide a fiber orientation that is perpendicular to the surface (face).

1.3For satisfactory performance, properly installed protective vapor retarders must be used in below ambient temperature applications to reduce movement of water vapor through or around the insulation towards the colder surface. Failure to use a vapor retarder can lead to insulation and system damage. Refer to Practice C921 to aid material selection. Although vapor retarders are not part of this specification, properties required in Specification C1136 are pertinent to application or performance.

1.4This standard does not purport to provide the performance requirements of hourly-rated fire systems. Consult the manufacturer for the appropriate system.

1.5The 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.

1.6This 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.

1.7This 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
C 16
DocumentType
Standard
Pages
5
PublisherName
American Society for Testing and Materials
Status
Current
Supersedes

ASTM E 84 : 2023 : REV D Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 168 : 2019 Standard Terminology Relating to Thermal Insulation
ASTM C 177 : 2019 Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus
ASTM C 921 : 2010 : R2015 Standard Practice for Determining the Properties of Jacketing Materials for Thermal Insulation (Withdrawn 2021)
ASTM E 84 : 2023 : REV C Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 680 : 2023 : REV A Standard Practice for Estimate of the Heat Gain or Loss and the Surface Temperatures of Insulated Flat, Cylindrical, and Spherical Systems by Use of Computer Programs
ASTM C 1304 : 2018 Standard Test Method for Assessing the Odor Emission of Thermal Insulation Materials
ASTM C 447 : 2015 Standard Practice for Estimating the Maximum Use Temperature of Thermal Insulations
ASTM C 447 : 2015 : R2022 Standard Practice for Estimating the Maximum Use Temperature of Thermal Insulations
ASTM E 84 : 2023 Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 390 : 2008 : R2024 Standard Practice for Sampling and Acceptance of Thermal Insulation Lots
ASTM C 680 : 2019 Standard Practice for Estimate of the Heat Gain or Loss and the Surface Temperatures of Insulated Flat, Cylindrical, and Spherical Systems by Use of Computer Programs
ASTM C 680 : 1989 : R1995 : EDT 1 Standard Practice for Determination of Heat Gain or Loss and the Surface Temperatures of Insulated Pipe and Equipment Systems by the Use of a Computer Program
ASTM C 1335 : 2012 : R2017 Standard Test Method for Measuring Non-Fibrous Content of Man-Made Rock and Slag Mineral Fiber Insulation
ASTM E 84 : 2021 Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 518 : 2002 Standard Test Method for Steady-State Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus
ASTM C 390 : 2008 : R2019 Standard Practice for Sampling and Acceptance of Thermal Insulation Lots
ASTM E 84 : 2022 Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 1304 : 2023 Standard Test Method for Assessing the Odor Emission of Thermal Insulation Materials
ASTM C 1338 : 2019 Standard Test Method for Determining Fungi Resistance of Insulation Materials and Facings
ASTM C 167 : 2022 Standard Test Methods for Thickness and Density of Blanket or Batt Thermal Insulations
ASTM C 1338 : 2019 : R2022 Standard Test Method for Determining Fungi Resistance of Insulation Materials and Facings
ASTM E 84 : 2020 Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 665 : 2023 Standard Specification for Mineral-Fiber Blanket Thermal Insulation for Light Frame Construction and Manufactured Housing
ASTM E 84 : 2021 : REV A Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 1101/C1101M : 2006 : R2017 Standard Test Methods for Classifying the Flexibility or Rigidity of Mineral Fiber Blanket and Board Insulation
ASTM C 518 : 2017 Standard Test Method for Steady-State Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus
ASTM C 1101/C1101M : 2023 Standard Test Methods for Classifying the Flexibility or Rigidity of Mineral Fiber Blanket and Board Insulation
ASTM C 1136 : 2021 Standard Specification for Flexible, Low Permeance Vapor Retarders for Thermal Insulation
ASTM C 518 : 2021 Standard Test Method for Steady-State Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus
ASTM E 84 : 2023 : REV B Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 795 : 2008 : R2023 Standard Specification for Thermal Insulation for Use in Contact with Austenitic Stainless Steel
ASTM C 680 : 2004 : EDT 2 Standard Practice for Estimate of the Heat Gain or Loss and the Surface Temperatures of Insulated Flat, Cylindrical, and Spherical Systems by Use of Computer Programs
ASTM C 167 : 2018 Standard Test Methods for Thickness and Density of Blanket or Batt Thermal Insulations
ASTM C 177 : 2019 : EDT 1 Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus
ASTM C 167 : 1998 Standard Test Methods for Thickness and Density of Blanket or Batt Thermal Insulations
ASTM C 665 : 2017 Standard Specification for Mineral-Fiber Blanket Thermal Insulation for Light Frame Construction and Manufactured Housing
ASTM C 168 : 2022 Standard Terminology Relating to Thermal Insulation
ASTM C 1335 : 2023 Standard Test Method for Measuring Non-Fibrous Content of Man-Made Rock and Slag Mineral Fiber Insulation
ASTM C 1136 : 2023 Standard Specification for Flexible, Low Permeance Vapor Retarders for Thermal Insulation
ASTM E 84 : 2023 : REV A Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM C 680 : 2023 Standard Practice for Estimate of the Heat Gain or Loss and the Surface Temperatures of Insulated Flat, Cylindrical, and Spherical Systems by Use of Computer Programs
ASTM C 795 : 2008 : R2018 Standard Specification for Thermal Insulation for Use in Contact with Austenitic Stainless Steel
ASTM C 1136 : 2017 : REV A Standard Specification for Flexible, Low Permeance Vapor Retarders for Thermal Insulation
ASTM C 795 : 1992 : R1998 : EDT 1 Standard Specification for Thermal Insulation for Use in Contact with Austenitic Stainless Steel
ASTM C 518 : 1998 Standard Test Method for Steady-State Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus

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