ASTM-G97 Standard Test Method for Laboratory Evaluation of Magnesium Sacrificial Anode Test Specimens for Underground Applications

ASTM-G97 - 2018 R22 EDITION - CURRENT
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Standard Test Method for Laboratory Evaluation of Magnesium Sacrificial Anode Test Specimens for Underground Applications
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Scope

1.1 This test method describes a laboratory procedure that measures the two fundamental performance properties of magnesium sacrificial anode test specimens operating in a saturated calcium sulfate, saturated magnesium hydroxide environment. The two fundamental properties are electrode (oxidation potential) and ampere hours (Ah) obtained per unit mass of specimen consumed. Magnesium anodes installed underground are usually surrounded by a backfill material that typically consists of 75% gypsum (CaSO42H2 O), 20% bentonite clay, and 5% sodium sulfate (Na2SO4 ). The calcium sulfate, magnesium hydroxide test electrolyte simulates the long term environment around an anode installed in the gypsum-bentonite-sodium sulfate backfill.

1.2 This test method is intended to be used for quality assurance by anode manufacturers or anode users. However, long term field performance properties may not be identical to property measurements obtained using this laboratory test.

Note 1--Refer to Terminology G15 for terms used in this test method.

1.3 This 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. For specific precautions, See Section 7 and Paragraph 8.1.1.

Keywords

coulometer; electroplater's tape; sacrificial anode

To find similar documents by ASTM Volume:

03.02 (Corrosion of Metals; Wear and Erosion)

To find similar documents by classification:

77.040.99 (Other methods of testing of metals)

77.150.20 (Magnesium products)

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Document Number

ASTM-G0097-18R22

Revision Level

2018 R22 EDITION

Status

Current

Modification Type

Revision

Publication Date

Oct. 7, 2022

Document Type

Test Method

Page Count

5 pages

Committee Number

G01.10