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ASTM G 32 : 2016 : REDLINE

Current

Current

The latest, up-to-date edition.

Standard Test Method for Cavitation Erosion Using Vibratory Apparatus

Available format(s)

PDF

Language(s)

English

Published date

01-02-2016

£63.73
Excluding VAT

CONTAINED IN VOL. 03.02, 2016 Describes the production of cavitation damage on the face of a specimen vibrated at high frequency while immersed in a liquid.

Committee
G 02
DocumentType
Redline
Pages
24
PublisherName
American Society for Testing and Materials
Status
Current

1.1This test method covers the production of cavitation damage on the face of a specimen vibrated at high frequency while immersed in a liquid. The vibration induces the formation and collapse of cavities in the liquid, and the collapsing cavities produce the damage to and erosion (material loss) of the specimen.

1.2Although the mechanism for generating fluid cavitation in this method differs from that occurring in flowing systems and hydraulic machines (see 5.1), the nature of the material damage mechanism is believed to be basically similar. The method therefore offers a small-scale, relatively simple and controllable test that can be used to compare the cavitation erosion resistance of different materials, to study in detail the nature and progress of damage in a given material, or—by varying some of the test conditions—to study the effect of test variables on the damage produced.

1.3This test method specifies standard test conditions covering the diameter, vibratory amplitude and frequency of the specimen, as well as the test liquid and its container. It permits deviations from some of these conditions if properly documented, that may be appropriate for some purposes. It gives guidance on setting up a suitable apparatus and covers test and reporting procedures and precautions to be taken. It also specifies standard reference materials that must be used to verify the operation of the facility and to define the normalized erosion resistance of other test materials.

1.4A history of this test method is given in Appendix X4, followed by a comprehensive bibliography.

1.5The values stated in SI units are to be regarded as standard. The inch-pound units given in parentheses are for information only.

1.6This 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 safety warning information, see 6.1, 10.3, and 10.6.1.

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17/30352613 DC : 0 BS IEC 63001 ED1.0 - MEASUREMENT AND EVALUATION OF THE CAVITATION NOISE
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BS EN ISO 2819:2018 Metallic coatings on metallic substrates. Electrodeposited and chemically deposited coatings. Review of methods available for testing adhesion
16/30338815 DC : 0 BS EN ISO 2819 - SUBSTRATES - ELECTRODEPOSITED AND CHEMICALLY DEPOSITED COATINGS - REVIEW OF METHODS AVAILABLE FOR TESTING ADHESION
I.S. EN ISO 2819:2018 METALLIC COATINGS ON METALLIC SUBSTRATES - ELECTRODEPOSITED AND CHEMICALLY DEPOSITED COATINGS - REVIEW OF METHODS AVAILABLE FOR TESTING ADHESION (ISO 2819:2017)
ASTM G 190 : 2015 Standard Guide for Developing and Selecting Wear Tests (Withdrawn 2021)
ASTM D 5752 : 2010 Standard Specification for Supplemental Coolant Additives (SCAs) for Use in Precharging Coolants for Heavy-Duty Engines

ASTM E 177 : 2014 : REDLINE Standard Practice for Use of the Terms Precision and Bias in ASTM Test Methods
ASTM G 134 : 1995 : R2001 : EDT 1 Standard Test Method for Erosion of Solid Materials by a Cavitating Liquid Jet
ASTM B 160 : 2005 : EDT 1 Standard Specification for Nickel Rod and Bar

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