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EN ISO 14577-4:2016

Current

Current

The latest, up-to-date edition.

Metallic materials - Instrumented indentation test for hardness and materials parameters - Part 4: Test method for metallic and non-metallic coatings (ISO 14577-4:2016)

Published date

30-11-2016

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European foreword
Foreword
Introduction
1 Scope
2 Normative references
3 Symbols and designations
4 Calibration and direct verification of testing machines
5 Test pieces
6 Procedure
7 Data analysis and evaluation of results for
  indentation normal to the surface
8 Uncertainty of the results
9 Test report
Annex A (informative) - Contact point and fully elastic regime
Bibliography

ISO 14577-4:2016 specifies a method for testing coatings which is particularly suitable for testing in the nano/micro range applicable to thin coatings. However, the application of this method of this part of ISO 14577 is not needed if the indentation depth is such a small fraction of the coating thickness that in any possible case a substrate influence can be neglected and the coating can be considered as a bulk material. Limits for such cases are given.This test method is limited to the examination of single layers when the indentation is carried out normal to the test piece surface, but graded and multilayer coatings can also be measured in cross-section if the thickness of the individual layers or gradations is greater than the spatial resolution of the indentation process.The test method is not limited to any particular type of material. Metallic and non-metallic coatings are included in the scope of this part of ISO 14577. In this part of ISO 14577, the term coating is used to refer to any solid layer with homogeneous properties different to that of a substrate it is connected to. The method assumes that coating properties are constant with indentation depth. Composite coatings are considered to be homogenous if the structure size is less than the indentation size.The application of this part of ISO 14577 regarding measurement of indentation hardness is only possible if the indenter is a pyramid or a cone with a radius of tip curvature small enough for plastic deformation to occur within the coating. The hardness of visco-elastic materials or materials exhibiting significant creep will be strongly affected by the time taken to perform the test.

Committee
CEN/TC 459/SC 1
DocumentType
Standard
PublisherName
Comite Europeen de Normalisation
Status
Current

PD CEN/TS 17010:2016 Nanotechnologies. Guidance on measurands for characterising nano-objects and materials that contain them
DIN EN 1071-9:2009-10 ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 9: DETERMINATION OF FRACTURE STRAIN
I.S. EN 1071-13:2010 ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 13: DETERMINATION OF WEAR RATE BY THE PIN-ON-DISK METHOD
EN 1071-12:2010 Advanced technical ceramics - Methods of test for ceramic coatings - Part 12: Reciprocating wear test
EN 1071-9:2009 Advanced technical ceramics - Methods of test for ceramic coatings - Part 9: Determination of fracture strain
CEN/TS 17010:2016 Nanotechnologies - Guidance on measurands for characterising nano-objects and materials that contain them
S.R. CEN/TS 17010:2016 NANOTECHNOLOGIES - GUIDANCE ON MEASURANDS FOR CHARACTERISING NANO-OBJECTS AND MATERIALS THAT CONTAIN THEM
DIN EN 1071-13:2010-07 Advanced technical ceramics - Methods of test for ceramic coatings - Part 13: Determination of wear rate by the pin-on-disk method
BS EN 1071-13:2010 Advanced technical ceramics. Methods of test for ceramic coatings Determination of wear rate by the pin-on-disk method
VDI/VDE 2616 Blatt 1:2012-08 Hardness testing of metallic materials
08/30185921 DC : 0 BS EN 1071-9 - ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 9: DETERMINATION OF FRACTURE STRAIN
UNI EN 1071-12 : 2010 ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 12: RECIPROCATING WEAR TEST
UNI EN 1071-13 : 2010 ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 13: DETERMINATION OF WEAR RATE BY THE PIN- ON-DISK METHOD
DIN EN 1071-12:2010-07 Advanced technical ceramics - Methods of test for ceramic coatings - Part 12: Reciprocating wear test
I.S. EN 1071-9:2009 ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 9: DETERMINATION OF FRACTURE STRAIN
I.S. EN 1071-12:2010 ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 12: RECIPROCATING WEAR TEST
BS EN 1071-12:2010 Advanced technical ceramics. Methods of test for ceramic coatings Reciprocating wear test
BS EN 1071-9:2009 Advanced technical ceramics. Methods of test for ceramic coatings Determination of fracture strain
UNI EN 1071-9 : 2009 ADVANCED TECHNICAL CERAMICS - METHODS OF TEST FOR CERAMIC COATINGS - PART 9: DETERMINATION OF FRACTURE STRAIN
EN 1071-13:2010 Advanced technical ceramics - Methods of test for ceramic coatings - Part 13: Determination of wear rate by the pin-on-disk method

ISO 1514:2016 Paints and varnishes — Standard panels for testing
ISO/IEC 17025:2005 General requirements for the competence of testing and calibration laboratories
ISO 4287:1997 Geometrical Product Specifications (GPS) — Surface texture: Profile method — Terms, definitions and surface texture parameters
ISO 4516:2002 Metallic and other inorganic coatings — Vickers and Knoop microhardness tests
ISO 2808:2007 Paints and varnishes Determination of film thickness
ISO 14577-1:2015 Metallic materials Instrumented indentation test for hardness and materials parameters Part 1: Test method
ISO 14577-3:2015 Metallic materials Instrumented indentation test for hardness and materials parameters Part 3: Calibration of reference blocks
ISO 3270:1984 Paints and varnishes and their raw materials — Temperatures and humidities for conditioning and testing
ISO 14577-2:2015 Metallic materials Instrumented indentation test for hardness and materials parameters Part 2: Verification and calibration of testing machines
ISO/IEC Guide 98-3:2008 Uncertainty of measurement — Part 3: Guide to the expression of uncertainty in measurement (GUM:1995)

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