
BS ISO 19674:2017
Current
The latest, up-to-date edition.

Fine ceramics (advanced ceramics, advanced technical ceramics). Methods of test for ceramic coatings. Determination of internal stress in ceramic coatings by application of the Stoney formula
Hardcopy , PDF
English
11-09-2017
Foreword
Introduction
1 Scope
2 Normative references
3 Terms and definitions
4 Principle
5 Apparatus
6 Preparation of test specimens
7 Procedure
8 Limits to method
9 Test report
Annex A (informative) - Determination of suitable dimensions
for the test sample
Bibliography
Gives a method for the determination of the internal stress in thin ceramic coatings by application of the Stoney formula to the results obtained from measurement of the radius of curvature of coated strips or discs.
Committee |
RPI/13
|
DevelopmentNote |
Supersedes 16/30316140 DC. (09/2017)
|
DocumentType |
Standard
|
Pages |
18
|
PublisherName |
British Standards Institution
|
Status |
Current
|
Supersedes |
This document specifies a method for the determination of the internal stress in thin ceramic coatings by application of the Stoney formula to the results obtained from measurement of the radius of curvature of coated strips or discs.
Standards | Relationship |
ISO 19674:2017 | Identical |
EN 1071-10:2009 | Advanced technical ceramics - Methods of test for ceramic coatings - Part 10: Determination of coating thickness by cross sectioning |
ISO 26423:2009 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Determination of coating thickness by crater-grinding method |
ISO 18452:2005 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Determination of thickness of ceramic films by contact-probe profilometer |
ISO 3274:1996 | Geometrical Product Specifications (GPS) — Surface texture: Profile method — Nominal characteristics of contact (stylus) instruments |
DIN 50992-1:2002-05 | THICKNESS MEASUREMENT OF COATINGS AND CHARACTERISING OF SURFACES WITH SURFACE WAVES - PART 1: EVALUATION OF ELASTIC CONSTANTS, MASS DENSITY AND THICKNESS OF LAYERS BY LASER-INDUCTED ULTRASONIC SURFACE WAVES |
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