Publication detail

Comparison of Sublimation 3D Scanning Sprays in Terms of Their Effect on the Resulting 3D Scan, Thickness, and Sublimation Time

FRANKE, J. KOUTECKÝ, T. KOUTNÝ, D.

Original Title

Comparison of Sublimation 3D Scanning Sprays in Terms of Their Effect on the Resulting 3D Scan, Thickness, and Sublimation Time

Type

journal article in Web of Science

Language

English

Original Abstract

This study compared eight sublimation scanning sprays in terms of their effect on 3D scanning results, coating thickness, and sublimation time. The work used an automated spraying system to ensure the same deposition conditions for all tested materials. All experiments were performed under the same environmental conditions to exclude the influence of the ambient environment on the coatings. All tested scanning sprays created coatings with thicknesses in the order of tens of micrometers that were detectable by the 3D scanner Atos III Triple Scan. The coatings must be applied carefully when accurate measurements are required. All used materials enabled the capture of the highly reflective surface of the Si-wafer. However, the differences between some sprays were significant. Sublimation time measurements showed that all coatings disappeared from the Si-wafer surface completely. Nevertheless, all coatings left visible traces on the mirror-like surface. They were easily wiped off with a cloth.

Keywords

optical 3D scanning; matte coating; scanning spray; sublimation coating; coating thickness

Authors

FRANKE, J.; KOUTECKÝ, T.; KOUTNÝ, D.

Released

11. 9. 2023

Publisher

MDPI

Location

Basel, Switzerland

ISBN

1996-1944

Periodical

Materials

Year of study

16

Number

18

State

Swiss Confederation

Pages from

1

Pages to

15

Pages count

15

URL

Full text in the Digital Library

BibTex

@article{BUT184623,
  author="Jakub {Franke} and Tomáš {Koutecký} and Daniel {Koutný}",
  title="Comparison of Sublimation 3D Scanning Sprays in Terms of Their Effect on the Resulting 3D Scan, Thickness, and Sublimation Time",
  journal="Materials",
  year="2023",
  volume="16",
  number="18",
  pages="15",
  doi="10.3390/ma16186165",
  issn="1996-1944",
  url="https://www.mdpi.com/1996-1944/16/18/6165"
}