ABSTRACT
Although the scratch test has now become commonplace both in research as a measurement tool and in industry as a Quality Control method, its utility in gaining a quantitative measure of the adhesion of a coating has only been approached in the past few years. This article provides a timely review of recent progress made in extracting quantitative data from the scratch test. The combined use of the scratch test with other techniques has revealed additional data on sub-surface events that were not previously accessible. This article reviews these developments and looks ahead at future challenges.
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AUTHORS
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Guillaume BERTHOUT
: Product Manager - Anton Paar France, Courtaboeuf, France
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Nicholas X. RANDALL
: Lead Scientist and Product Manager - Anton Paar TriTec, Peseux, Switzerland
INTRODUCTION
This article provides a detailed analysis of instrumented scratch
testing techniques. These devices are generally used to qualitatively
characterize coatings and thin films. Interpretation of the data delivered
by these instruments has been facilitated by the advent of high-performance
tools such as panoramic imaging, scratch test profile tracking and
spatial synchronization during optical observation of a scratch. In
addition, the ability to model the deformation of a coating and its
substrate as a function of applied load means that test parameters
can be adjusted to favor positioning of the maximum stress field not
far from the interface. This has led to the development of a wide
range of indenters with appropriate contact conditions and pressures.
Significant progress has also been made in using the scratch technique
to measure mechanical properties related to adhesion, such as toughness,
hardness and viscoelasticity. Similarly, the combined use of scratch
testing with other techniques such as acoustic microscopy, Raman spectroscopy,
in situ microscopy, etc. has provided additional information on induced
damage (cracking, fatigue, fracture) that was not previously systematically
accessible or exploitable. The article reviews these developments
and outlines the challenges ahead.
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KEYWORDS
coatings adherence
| scratch resistance
| sub-surface damages
| extracting data
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Scratch Testing