ASTM D7803-2012 2500 Standard Practice for Preparation of Zinc (Hot-Dip Galvanized) Coated Iron and Steel Product and Hardware Surfaces for Powder Coating《粉末涂料的锌(热浸镀锌)涂层钢铁产品和五金表面制备.pdf
《ASTM D7803-2012 2500 Standard Practice for Preparation of Zinc (Hot-Dip Galvanized) Coated Iron and Steel Product and Hardware Surfaces for Powder Coating《粉末涂料的锌(热浸镀锌)涂层钢铁产品和五金表面制备.pdf》由会员分享,可在线阅读,更多相关《ASTM D7803-2012 2500 Standard Practice for Preparation of Zinc (Hot-Dip Galvanized) Coated Iron and Steel Product and Hardware Surfaces for Powder Coating《粉末涂料的锌(热浸镀锌)涂层钢铁产品和五金表面制备.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D7803 12Standard Practice forPreparation of Zinc (Hot-Dip Galvanized) Coated Iron andSteel Product and Hardware Surfaces for Powder Coating1This standard is issued under the fixed designation D7803; the number immediately following the designation indicates the year oforiginal adoption
2、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 describes methods of preparing surfaces ofhot-dip galvanized ir
3、on and steel for powder coating and theapplication of powder coating materials.1.1.1 Powder coating is a dry finishing process which usesfinely ground particles of pigment and resin, electrostaticallycharged, and sprayed onto a part to be coated. The parts areelectrically grounded so that the charge
4、d particles projected atthem adhere to the surface and are held there until melted andfused into a smooth coating in the curing oven.1.1.2 Hot-dip galvanized iron or steel is produced by theimmersion of fabricated or un-fabricated products in a bath ofmolten zinc, as specified in Specification A123/
5、A123M orA153/A153M. This practice covers surface preparation andthermal pretreatment of iron and steel products and hardwarewhich have not been painted or powder coated previously(Practice D6386). Galvanized surfaces may have been treatedwith protective coatings to prevent the occurrence of wetstora
6、ge stain. This practice neither applies to sheet galvanizedsteel products nor to the coil coating or continuous rollercoating processes.1.2 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for informationonly.1.3 This standard does not purport to a
7、ddress 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:2A123/A123M
8、Specification for Zinc (Hot-Dip Galvanized)Coatings on Iron and Steel ProductsA153/A153M Specification for Zinc Coating (Hot-Dip) onIron and Steel HardwareA780 Practice for Repair of Damaged and Uncoated Areasof Hot-Dip Galvanized CoatingsB201 Practice for Testing Chromate Coatings on Zinc andCadmiu
9、m SurfacesD4285 Test Method for Indicating Oil or Water in Com-pressed AirD6386 Practice for Preparation of Zinc (Hot-Dip Galva-nized) Coated Iron and Steel Product and HardwareSurfaces for PaintingD7091 Practice for Nondestructive Measurement of DryFilm Thickness of Nonmagnetic Coatings Applied toF
10、errous Metals and Nonmagnetic, Nonconductive Coat-ings Applied to Non-Ferrous MetalsE376 Practice for Measuring Coating Thickness byMagnetic-Field or Eddy-Current (Electromagnetic) Test-ing MethodsF21 Test Method for Hydrophobic Surface Films by theAtomizer Test2.2 Society for Protective Coatings Sp
11、ecifications:3Surface Preparation Specification No. 1 Solvent CleaningSurface Preparation Specification No. 2 Hand Tool CleaningSurface Preparation Specification No. 3 Power Tool Clean-ingSurface Preparation Specification No. 12 Surface Prepara-tion and Cleaning of Metals by Water-Jetting Prior toRe
12、coatingSurface Preparation Specification No. 16 Brush-Off BlastCleaning of Coated and Uncoated Galvanized Steel,Stainless Steels, and Non-Ferrous Metals3. Summary of Practice3.1 This practice describes the procedures that can be usedto prepare surfaces for powder coating application on new,partially
13、 weathered, and fully weathered zinc-coated surfaceson after-fabrication iron and steel products. These procedures1This practice is under the jurisdiction of ASTM Committee on Paint andRelated Coatings, Materials, and Applications and is the direct responsibility ofSubcommittee D01.46 on Industrial
14、Protective Coatings.Current edition approved June 1, 2012. Published June 2012. DOI: 10.1520/D7803-12.2For referenced ASTM 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
15、Document Summary page onthe ASTM website.3Available from Society for Protective Coatings (SSPC), 40 24th St., 6th Floor,Pittsburgh, PA 15222-4656, http:/www.sspc.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1improve the bond of
16、the powder coating to the zinc surfaceproviding for long life.3.2 The proper preparation of galvanized surfaces prior toapplication of powder coating is dependent on cleaning,profiling, and thermal pretreatment.4. Significance and Use4.1 This practice describes the methods of preparation ofhot-dip g
17、alvanized surfaces prior to the application of powdercoating. The key to achieving proper adhesion between powdercoatings and galvanized steel is surface preparation. Thesurface must be entirely free from metal oxides prior to powdercoating. Any metal oxides that remain on the surface of thegalvaniz
18、ed steel can potentially retain air or moisture. Uponheating during the curing stages of the powder application, theoxides may release water vapor or air, which can expand andpenetrate the powder coating, causing blisters or voids.4.2 The zinc coating is constantly in a state of change. Fromthe time
19、 the steel part is removed from the galvanizing kettle,the exposed zinc coating interacts with the environment toform, first zinc oxides and zinc hydroxides, and then zinccarbonates.4The process of complete conversion of the outerlayer of zinc carbonates can take up to two years of exposureto the en
20、vironment, depending on the local weather andmoisture conditions.4.3 The zinc surface after full weathering is very resistant toatmospheric corrosion because the tight patina that is formed(zinc oxide, zinc hydroxide and zinc carbonate) is dense andtenacious. However, during the formative stages of
21、patinadevelopment, the oxide/hydroxide layer is poorly adhered andmust be removed in order for the powder coating to adhereproperly to the galvanized coating. The second is pinholing/blistering of the coating which can severely limit its potentialperformance, especially in aggressive chloride enviro
22、nments.Entrapped gasses developed during the galvanizing processescape the surface through the coating as it cures at hightemperatures. If these volatile materials are not removedthrough an outgassing process prior to the baking of thepowder, then pinholing or blistering can occur. The presence ofpi
23、nholes gives chlorides and other corrosive agents access tothe zinc substrate consequently producing zinc corrosionproducts which may leach out through the coatings. While thepresence of these corrosion products may not result in associ-ated delamination of the coating, unsightly white staining ofth
24、e coating can occur. Blisters are defects that are not adheredto the surface and may easily be broken into or off duringhandling, which creates performance and aesthetic issues. Theproper preparation of the galvanized coating surface canincrease the adhesion and coverage necessary to overcomethese p
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