ASTM G 62 : 2014
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Test Methods for Holiday Detection in Pipeline Coatings
Hardcopy , PDF
14-10-2023
English
29-07-2014
These test methods cover the apparatus and procedure for detecting holidays in pipeline type coatings.
Committee |
D 01
|
DocumentType |
Test Method
|
Pages |
4
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
1.1These test methods cover the apparatus and procedure for detecting holidays in pipeline type coatings.
1.2Method A is designed to detect holidays such as pinholes and voids in thin-film coatings from 0.025 to 0.254 mm (1 to 10 mils) in thickness using ordinary tap water and an applied voltage of less than 100 V d-c. It is effective on films up to 0.508 mm (20 mils) thickness if a wetting agent is used with the water. It should be noted, however, that this method will not detect thin spots in the coating. This may be considered to be a nondestructive test because of the relatively low voltage.
1.3Method B is designed to detect holidays such as pinholes and voids in pipeline coatings; but because of the higher applied voltages, it can also be used to detect thin spots in the coating. This method can be used on any thickness of pipeline coating and utilizes applied voltages between 900 and 20 000 V d-c.2 This method is considered destructive because the high voltages involved generally destroy the coating at thin spots.
1.4The values stated in SI units to three significant decimals are to be regarded as the standard. The values given in parentheses are for information only.
1.5This 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 and health practices and determine the applicability of regulatory limitations prior to use.
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ASTM G 14 : 2004 : R2018 | Standard Test Method for Impact Resistance of Pipeline Coatings (Falling Weight Test) |
ASTM D 5498 : 2012 : REV A : R2018 | Standard Guide for Developing a Training Program for Personnel Performing Coating and Lining Work Inspection for Nuclear Facilities |
ASTM D 4787 : 2013 : R2018 | Standard Practice for Continuity Verification of Liquid or Sheet Linings Applied to Concrete Substrates |
ASTM A 1055/A1055M : 2016 | Standard Specification for Zinc and Epoxy Dual-Coated Steel Reinforcing Bars |
ASTM A 1113/A1113M : 2020 : EDT 1 | Standard Specification for Corrugated Steel Structural Plate, Polymer-Coated, for Field-Bolted Pipe, Pipe-Arches, and Arches |
ASTM G 13/G13M : 2021 | Standard Test Method for Impact Resistance of Pipeline Coatings<brk/>(Limestone Drop Test) |
ASTM A 742/A742M : 2020 | Standard Specification for Steel Sheet, Metallic Coated and Polymer Precoated for Corrugated Steel Pipe |
ASTM D 6676/D6676M : 2021 | Standard Test Method for Cathodic Disbonding of Exterior Pipeline Coatings at Elevated Temperatures Using Interior Heating |
ASTM A 775/A775M : 2019 | Standard Specification for Epoxy-Coated Steel Reinforcing Bars |
ASTM D 6577 : 2015 : R2019 | Standard Guide for Testing Industrial Protective Coatings |
ASTM G 6 : 2007 : R2020 | Standard Test Method for Abrasion Resistance of Pipeline Coatings |
ASTM A 934/A934M : 2019 | Standard Specification for Epoxy-Coated Prefabricated Steel Reinforcing Bars |
ASTM G 14 : 2004 : R2010 : EDT 1 | Standard Test Method for Impact Resistance of Pipeline Coatings (Falling Weight Test) |
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