ASTM D5162-2001 Standard Practice for Discontinuity (Holiday) Testing of Nonconductive Protective Coating on Metallic Substrates《金属衬底上非传导保护涂料的间断性(假期)检验标准实施规程》.pdf
《ASTM D5162-2001 Standard Practice for Discontinuity (Holiday) Testing of Nonconductive Protective Coating on Metallic Substrates《金属衬底上非传导保护涂料的间断性(假期)检验标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM D5162-2001 Standard Practice for Discontinuity (Holiday) Testing of Nonconductive Protective Coating on Metallic Substrates《金属衬底上非传导保护涂料的间断性(假期)检验标准实施规程》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 5162 01Standard Practice forDiscontinuity (Holiday) Testing of Nonconductive ProtectiveCoating on Metallic Substrates1This standard is issued under the fixed designation D 5162; the number immediately following the designation indicates the year oforiginal adoption or, in the case of
2、revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This practice covers procedures for determining discon-tinuities using two types of test equipm
3、ent:1.1.1 Test Method ALow Voltage Wet Sponge, and1.1.2 Test Method BHigh Voltage Spark Testers.1.2 This practice addresses metallic substrates. For concretesurfaces, refer to Practice D 4787.21.3 The values stated in inch-pound units are to be regardedas the standard. The values given in parenthese
4、s immediatelyfollowing inch-pound units are for information only.1.4 This standard does not purport to 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 appl
5、ica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:D 4787 Practice for Continuity Verification of Liquid orSheet Linings Applied to Concrete Substrates2G 62 Test Methods for Holiday Detection in Pipeline Coat-ings23. Terminology3.1 Definitions of Terms Specif
6、ic to This Standard:3.1.1 discontinuity, as used in this standard a void, crack,thin spot, foreign inclusion, or contamination in the coatingfilm that significantly lowers the dielectric strength of thecoating film. May also be identified as a holiday or pinhole.3.1.2 holiday, as used in this standa
7、rda term that identi-fies a discontinuity.3.1.3 holiday detector, as used in this standard a devicethat locates discontinuities in a nonconductive coating filmapplied to a conductive surface.3.1.4 pinhole, as used in this standarda film defectcharacterized by small porelike flaws in the coating whic
8、h,when extended entirely through the film, will appear as adiscontinuity. A pinhole in the finish coat may not appear as adiscontinuity.4. Significance and Use4.1 A coating is applied to a metallic substrate to preventcorrosion, reduce abrasion or reduce product contamination, orboth. The degree of
9、coating continuity required is dictated byservice conditions. Discontinuities in a coating are frequentlyvery minute and not readily visible. This practice provides aprocedure for electrical detection of minute discontinuities innonconductive coating systems.4.2 Electrical testing to determine the p
10、resence and numberof discontinuities in a coating film is performed on a noncon-ductive coating applied to a conductive surface. The allowablenumber of discontinuities should be determined prior toconducting this test since the acceptable quantity of disconti-nuities will vary depending on coating f
11、ilm thickness, design,and service conditions.4.3 The low voltage wet sponge test equipment is generallyused for determining the existence of discontinuities in coatingfilms having a total thickness of 20 mils (0.5 mm) or less. Highvoltage spark test equipment is generally used for determiningthe exi
12、stences of discontinuities in coating films having a totalthickness of greater than 20 mils (0.5 mm).4.4 Coatings that are applied at a thickness of less than 20mils (0.5 mm) may be susceptible to damage if tested with highvoltage spark testing equipment. Consult the coating manufac-turer for proper
13、 test equipment and inspection voltages.4.5 To prevent damage to a coating film when using highvoltage test instrumentation, total film thickness and dielectricstrength in a coating system shall be considered in selecting theappropriate voltage for detection of discontinuities. Atmo-spheric conditio
14、ns shall also be considered since the voltagerequired for the spark to gap a given distance in air varies withthe conductivity of the air at the time the test is conducted.Suggested starting voltages are provided in Table 1.1This practice is under the jurisdiction of ASTM Committee D33 on Protective
15、Coating and Lining Work for Power Generation Facilities and is the directresponsibility of Subcommittee D33.04 on Quality Systems and Inspection.Current edition approved June 10, 2001. Published August 2001. Originallypublished as D 5162 91. Last previous edition D 5162 00.2Annual Book of ASTM Stand
16、ards, Vol 06.02.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.4.6 The coating manufacturer shall be consulted to obtainthe following information, which would affect the accuracy ofthis test to determine discontinuities:4.6.1 Establ
17、ish the length of time required to adequately dryor cure the applied coating film prior to testing. Solventsretained in an uncured coating film may form an electricallyconductive path through the film to the substrate.4.6.2 Determine whether the coating contains electricallyconductive fillers or pig
18、ments that may affect the normaldielectric properties.4.7 This practice is intended for use with new liningsapplied to metal substrates. Its use on a lining previouslyexposed to an immersion condition has often resulted indamage to the lining and has produced erroneous detection ofdiscontinuities du
19、e to permeation or moisture absorption of thelining. Deposits may also be present on the surface causingtelegraphing. The use of a high voltage tester on a previouslyexposed lining has to be carefully considered because ofpossible spark through which will damage an otherwise soundlining. Although a
20、low voltage tester can be used withoutdamaging the lining, it may also produce erroneous results.5. Test MethodsTEST METHOD ALOW VOLTAGE WET SPONGETESTING5.1 Apparatus5.1.1 Low Voltage Holiday Detectoran electronic devicepowered by a self-contained battery with voltages ranging from5 to 90 V dc, dep
21、ending on the equipment manufacturerscircuit design. It is used to locate discontinuities in a noncon-ductive coating applied to a conductive substrate. Operationincludes the use of an open-cell sponge electrode wetted witha solution for exploring the coating surface, a ground connec-tion, and an au
22、dible or visual indicator, or both, for signaling apoint of coating discontinuity.5.1.2 Low Voltage Wet Sponge Tester a sensitivity devicewith the operating voltage being of little importance other thanbeing part of the particular electronic circuit design.5.1.3 Wet Sponge Type Instrumentsa number o
23、f commer-cially available, industry-accepted, instruments are available.The following electronic principle describes two types ofdevices generally used; others may be available but are notdescribed in this practice.5.1.3.1 Lightweight, Self-Contained, Portable Devicesbased on the electrical principl
24、e of an electromagnetic sensitiverelay or a solid-state electronic relay circuit that energizes anaudible or visual indicator when a coating discontinuity isdetected. Generally this equipment is capable of being recali-brated in the field by the user.5.1.3.2 Lightweight, Self-Contained, Portable Dev
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