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ISO 6507-1:2023

Current

Current

The latest, up-to-date edition.

Metallic materials — Vickers hardness test — Part 1: Test method

Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

English, French

Published date

16-10-2023

€144.00
Excluding VAT

This document specifies the Vickers hardness test method for the three different ranges of test force for metallic materials, including hard metals and other cemented carbides (see Table1), metallic coatings and other inorganic coatings.

The Vickers hardness test is specified in this document for lengths of indentation diagonals between 0,020mm and 1,400mm. Using this method to determine Vickers hardness from smaller indentations is outside the scope of this document as results would suffer from large uncertainties due to the limitations of optical measurement and imperfections in tip geometry.

The Vickers hardness specified in this document is also applicable for metallic and other inorganic coatings including electrodeposited coatings, autocatalytic coatings, sprayed coatings and anodic coatings on aluminium.

This document is applicable to measurements normal to the coated surface and to measurements on cross-sections, provided that the characteristics of the coating (smoothness, thickness, etc.) permit accurate readings of the diagonal of the indentation.

This document is not applicable for coatings with thickness less than 0,030mm when testing normal to the coating surface. This standard is not applicable for coatings with thickness less than 0,100mm when testing a cross-section of the coating. ISO14577-1 can be used for the determination of hardness from smaller indentations.”

A periodic verification method is specified for routine checking of the testing machine in service by the user.

For specific materials and/or products, relevant International Standards exist.

Committee
ISO/TC 164/SC 3
DocumentType
Standard
Pages
35
PublisherName
International Organization for Standardization
Status
Current

NACE TM0177:2024 Laboratory Testing of Metals for Resistance to Sulfide Stress Cracking and Stress Corrosion Cracking in H2S Environments

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