Title of article
Analysis of perforating and non-perforating micro-scale abrasion tests on coated substrates
Author/Authors
Schiffmann، نويسنده , , K.I. and Bethke، نويسنده , , R. and Kristen، نويسنده , , N.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
10
From page
2348
To page
2357
Abstract
The micro-scale abrasion test (ball crater test) is becoming a standard method for testing abrasive wear of coatings. Two main methods are common: (i) non-perforating tests, where the craters are restricted to the coating and (ii) perforating test where the craters go wide into the substrate. Both types of crater tests have been applied to a representative selection of coatings (DLC, TiN, Al) on two different substrates (steel, Ti-Alloy). The tests have been performed using different abrasive slurries (4 μm SiC or 1 μm Al2O3 in water or glycerine) and the crater wear volumes have been evaluated using optical microscopy and profilometric methods.
sults show that optical evaluation in both, non-perforating and perforating tests lead to an overestimation of crater volumes, due to a rounding of crater edges in the first case (non-perforating) and due to step formation at the coating substrate interface in the latter case (perforating). Profilometric evaluation generally yields more reliable results than optical evaluation. The use of different abrasive slurries dramatically changes the wear rates of up to a factor of 140. This can be utilized to adjust the wear condition to different applications. Small grained abrasives are essential for non-perforating tests and will also reduce errors in perforating tests.
Keywords
Abrasive wear , Profilometry , Micro-scale abrasion test , Ball crater , Perforating tests , Non-perforating tests
Journal title
Surface and Coatings Technology
Serial Year
2005
Journal title
Surface and Coatings Technology
Record number
1810661
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