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izvor podataka: crosbi

Evaluation of effective models of offset CTP plate aluminium oxide surface roughness characterisation (CROSBI ID 244377)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Pavlović, Živko ; Dedijer, Sandra ; Kašiković, Nemanja ; Novaković, Dragoljub ; Pál, Magdolna ; Risović, Dubravko Evaluation of effective models of offset CTP plate aluminium oxide surface roughness characterisation // International Journal of Surface Science and Engineering, 11 (2017), 5; 433-439. doi: 10.1504/IJSURFSE.2017.10009269

Podaci o odgovornosti

Pavlović, Živko ; Dedijer, Sandra ; Kašiković, Nemanja ; Novaković, Dragoljub ; Pál, Magdolna ; Risović, Dubravko

engleski

Evaluation of effective models of offset CTP plate aluminium oxide surface roughness characterisation

In this study, three different approaches for characterisation of printing plate’s non-printing elements surface structure and roughness were compared: stylus profilometric method, AFM, method and software (indirect), SEM image-based profilometry. The comparison was made to evaluate the possibility of utilising the different methods for characterisation of CTP offset printing plate surface roughness. The direct profilometric measurements involved the use of stylus profilometer visual analysis were made using AFM device and for the indirect approach, the Gwyddion software, for analysis of single and stereo SEM images and calculation of standard profilometric parameters, was used. The results of this study demonstrate that it is possible to obtain profilometric parameters from the analysis of AFM and SEM micrographs with appropriately calibrated grey scale intensity distribution and that the values of the parameters are comparable to those obtained by contact stylus profilometry. The results of this comparative study indicate that profilometric 2D direct stylus method is more applicable when larger areas tend to be measured, while the indirect image-based 3D profilometry is a valuable and efficient tool for characterisation of various surface’s topographies on micron scale sample areas.

contact stylus profilometry ; surface roughness ; surface topography ; atomic force microscopy ; AFM ; scanning electron microscopy ; SEM micrograph ; printing plate ; aluminium oxide

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Podaci o izdanju

11 (5)

2017.

433-439

objavljeno

1749-785X

1749-7868

10.1504/IJSURFSE.2017.10009269

Povezanost rada

nije evidentirano

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