ASTM G82-1998(2003) Standard Guide for Development and Use of a Galvanic Series for Predicting Galvanic Corrosion Performance《预测电流腐蚀特性用电流系列的制定和使用标准指南》.pdf
《ASTM G82-1998(2003) Standard Guide for Development and Use of a Galvanic Series for Predicting Galvanic Corrosion Performance《预测电流腐蚀特性用电流系列的制定和使用标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM G82-1998(2003) Standard Guide for Development and Use of a Galvanic Series for Predicting Galvanic Corrosion Performance《预测电流腐蚀特性用电流系列的制定和使用标准指南》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: G 82 98 (Reapproved 2003)Standard Guide forDevelopment and Use of a Galvanic Series for PredictingGalvanic Corrosion Performance1This standard is issued under the fixed designation G 82; the number immediately following the designation indicates the year of originaladoption or, in the c
2、ase of revision, the year of last revision.Anumber in parentheses indicates the year of last reapproval.Asuperscriptepsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide covers the development of a galvanic seriesand its subsequent use as a method of
3、predicting the effect thatone metal can have upon another metal can when they are inelectrical contact while immersed in an electrolyte. Sugges-tions for avoiding known pitfalls are included.1.2 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It
4、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. Specific precau-tionary statements are given in Section 5.2. Referenced Documents2.1 ASTM Standards:G3 Practice for Convent
5、ionsApplicable to ElectrochemicalMeasurements in Corrosion Testing2G15 Terminology Relating to Corrosion and CorrosionTesting2G16 Guide forApplying Statistics toAnalysis of CorrosionData2G71 Guide for Conducting and Evaluating Galvanic Cor-rosion Tests in Electrolytes23. Terminology3.1 Definitions o
6、f terms used in this guide are from Termi-nology G15.3.2 activethe negative (decreasingly oxidizing) directionof electrode potential.3.3 corrosion potentialthe potential of a corroding surfacein an electrolyte relative to a reference electrode measuredunder open-circuit conditions.3.4 galvanic corro
7、sionaccelerated corrosion of a metalbecause of an electrical contact with a more noble metal ornonmetallic conductor in a corrosive electrolyte.3.5 galvanic seriesa list of metals and alloys arrangedaccording to their relative corrosion potentials in a givenenvironment.3.6 noblethe positive (increas
8、ingly oxidizing) direction ofelectrode potential.3.7 passivethe state of the metal surface characterized bylow corrosion rates in a potential region that is stronglyoxidizing for the metal.3.8 polarizationthe change from the open-circuit elec-trode potential as the result of the passage of current.4
9、. Significance and Use4.1 When two dissimilar metals in electrical contact areexposed to a common electrolyte, one of the metals canundergo increased corrosion while the other can show de-creased corrosion.This type of accelerated corrosion is referredto as galvanic corrosion. Because galvanic corro
10、sion can occurat a high rate, it is important that a means be available to alertthe user of products or equipment that involve the use ofdissimilar metal combinations in an electrolyte of the possibleeffects of galvanic corrosion.4.2 One method that is used to predict the effects of galvaniccorrosio
11、n is to develop a galvanic series by arranging a list ofthe materials of interest in order of observed corrosion poten-tials in the environment and conditions of interest. The metalthat will suffer increased corrosion in a galvanic couple in thatenvironment can then be predicted from the relative po
12、sition ofthe two metals in the series.4.3 Types of Galvanic Series:4.3.1 One type of Galvanic Series lists the metals of interestin order of their corrosion potentials, starting with the mostactive (electronegative) and proceeding in order to the mostnoble (electropositive). The potentials themselve
13、s (versus anappropriate reference half-cell) are listed so that the potentialdifference between metals in the series can be determined. Thistype of Galvanic Series has been put in graphical form as aseries of bars displaying the range of potentials exhibited bythe metal listed opposite each bar. Suc
14、h a series is illustrated inFig. 1.4.3.2 The second type of galvanic series is similar to the firstin that it lists the metals of interest in order of their corrosionpotentials. The actual potentials themselves are not specified,1This guide is under the jurisdiction of ASTM Committee G01 on Corrosio
15、n ofMetals and is the direct responsibility of Subcommittee G01.11 on ElectrochemicalMeasurements in Corrosion Testing.Current edition approved October 1, 2003. Published October 2003. Originallyapproved in 1983. Last previous edition approved in 1998 as G 8298.2Annual Book of ASTM Standards, Vol 03
16、.02.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.however. Thus, only the relative position of materials in theseries is known and not the magnitude of their potentialdifference. Such a series is shown in Fig. 2.4.4 Use of a Galvan
17、ic Series:4.4.1 Generally, upon coupling two metals in the GalvanicSeries, the more active (electronegative) metal will have atendency to undergo increased corrosion while the more noble(electropositive) metal will have a tendency to undergo re-duced corrosion.4.4.2 Usually, the further apart two me
18、tals are in the series,and thus the greater the potential difference between them, thegreater is the driving force for galvanic corrosion. All otherNOTEDark boxes indicate active behavior of active-passive alloys.FIG. 1 Galvanic Series of Various Metals in Flowing Seawater at 2.4 to 4.0 m/s for 5 to
19、 15 Days at 5 to 30C (Redrawn from Original)5G 82 98 (2003)2factors being equal, and subject to the precautions in Section 5,this increased driving force frequently, although not always,results in a greater degree of galvanic corrosion.5. Precautions in the Use of a Galvanic Series5.1 The galvanic s
20、eries should not be confused with theelectromotive force series, which, although of a similar appear-ance to the galvanic series, is based on standard electrodepo-tentials of elements and not on corrosion potentials of metals.The electromotive force series should not be used for galvaniccorrosion pr
21、ediction.5.2 Each series is specific to the environment for which itwas compiled. For example, a series developed in a flowingambient temperature seawater should not be used to predict theperformance of galvanic couples in fresh water or in heatedseawater.5.3 Corrosion potentials can change with tim
22、e and theenvironment. These changes can affect the potential differencebetween the metals of interest and, in some cases, can reverserelative positions. It is thus imperative that the series used forthe prediction be obtained under similar conditions of exposureduration and electrolyte composition a
23、s the situation beingpredicted.5.4 Galvanic corrosion can occur between two identicalmaterials in different environments. The galvanic series gen-erated herein cannot be applied to this situation.5.5 Use of a galvanic series provides qualitative predictionof galvanic corrosion. It should not be used
24、 for quantitativepredictions of galvanic corrosion rate. A more precise determi-nation of the effect of galvanic coupling can be obtained by themeasurement of the corrosion currents involved as outlined inGuide G 71.3,45.6 Some published Galvanic Series, such as those in Fig. 15and 2, consider the p
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