5. Conclusions and outlook
Real technological advances have been made since the first use
of automated scratch testing in the 1980s, with a technique that has
seen its scope extended to a wide range of applications, from ultra-hard
coatings to soft polymers. Significant advances in the understanding
of deformation mechanisms have led to the development of more precise
methods for fine-tuning scratch parameters, with the main aim of concentrating
the epicenter of the stress field at depths relevant to stressing
the layer-substrate interface. Analytical and microscopic techniques
have transformed the scratch test from a simple deformation tool into
a quantitative, reproducible technique that is now commonplace in
industry and academic research. Automation of the method has enabled
it to be used for routine quality control without the need for massive
investment in manpower, with rapid processing of information....
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Conclusions and outlook