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DIN ISO 4498:2005-11

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

SINTERED METAL MATERIALS, EXCLUDING HARDMETALS - DETERMINATION OF APPARENT HARDNESS AND MICROHARDNESS

Available format(s)

Hardcopy , PDF

Superseded date

01-05-2007

Language(s)

English

Published date

12-01-2013

Foreword
Introduction
1 Scope
2 Normative references
3 Apparatus
4 Sampling and preparation of test pieces
5 Test procedures
  5.1 Procedure 1 - Determination of apparent hardness
  5.2 Procedure 2 - Determination of microhardness
6 Expression of results
  6.1 Apparent hardness
  6.2 Microhardness
7 Repeatability and reproducibility
  7.1 Vickers apparent hardness
  7.2 Rockwell apparent hardness
  7.3 Vickers microhardness
  7.4 Precision statement
8 Test report
Annex A (normative) Test conditions and test loads as
                      well as symbols and designations for
                      microhardness values
Annex B (informative) Repeatability and reproducibility
Bibliography

Defines methods of hardness testing of sintered metal materials, excluding hardmetals.

DocumentType
Standard
Pages
19
PublisherName
German Institute for Standardisation (Deutsches Institut für Normung)
Status
Superseded

Standards Relationship
ISO 4498:2010 Identical

ISO 6507-1:2005 Metallic materials Vickers hardness test Part 1: Test method
ISO 6506-1:2014 Metallic materials Brinell hardness test Part 1: Test method
ISO 4507:2000 Sintered ferrous materials, carburized or carbonitrided — Determination and verification of case-hardening depth by a micro-hardness test
ISO 4516:2002 Metallic and other inorganic coatings — Vickers and Knoop microhardness tests
ISO 6508-1:2016 Metallic materials — Rockwell hardness test — Part 1: Test method
DIN EN ISO 6508-1:2015-06 METALLIC MATERIALS - ROCKWELL HARDNESS TEST - PART 1: TEST METHOD (ISO 6508-1:2016)
DIN ISO 4507 E : 2001 SINTERED FERROUS MATERIALS, CARBURIZED OR CARBONITRIDED - DETERMINATION AND VERIFICATION OF CASE HARDENING DEPTH BY A MICRO-HARDNESS TEST

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