Detail publikačního výsledku

An experimental study for determination of an application method and TiO2 powder to ensure the thinnest matte coating layer for 3D optical scanning

HRUBOŠ, D.; KOUTECKÝ, T.; PALOUŠEK, D.

Originální název

An experimental study for determination of an application method and TiO2 powder to ensure the thinnest matte coating layer for 3D optical scanning

Anglický název

An experimental study for determination of an application method and TiO2 powder to ensure the thinnest matte coating layer for 3D optical scanning

Druh

Článek WoS

Originální abstrakt

Matte coating used for optical 3D scanning was investigated. The goal was to produce thinnest possible layer with sufficient covering effect. Three different TiO2 powders and two spraying guns were tested. Spraying was affected by agglomeration and sedimentation of TiO2 primary particles. Coating layer with thickness of 200–600 nm was produced by both guns.

Anglický abstrakt

Matte coating used for optical 3D scanning was investigated. The goal was to produce thinnest possible layer with sufficient covering effect. Three different TiO2 powders and two spraying guns were tested. Spraying was affected by agglomeration and sedimentation of TiO2 primary particles. Coating layer with thickness of 200–600 nm was produced by both guns.

Klíčová slova

3D scanning; Atomization; Layer thickness; Matte coating; Particles size; Titanium dioxide

Klíčová slova v angličtině

3D scanning; Atomization; Layer thickness; Matte coating; Particles size; Titanium dioxide

Autoři

HRUBOŠ, D.; KOUTECKÝ, T.; PALOUŠEK, D.

Rok RIV

2019

Vydáno

17.12.2018

Nakladatel

Elsevier

Místo

Amsterdam, Nizozemsko

ISSN

0263-2241

Periodikum

MEASUREMENT

Svazek

136

Číslo

March 2019

Stát

Spojené království Velké Británie a Severního Irska

Strany od

42

Strany do

49

Strany počet

8

URL

BibTex

@article{BUT152113,
  author="David {Hruboš} and Tomáš {Koutecký} and David {Paloušek}",
  title="An experimental study for determination of an application method and TiO2 powder to ensure the thinnest matte coating layer for 3D optical scanning",
  journal="MEASUREMENT",
  year="2018",
  volume="136",
  number="March 2019",
  pages="42--49",
  doi="10.1016/j.measurement.2018.12.058",
  issn="0263-2241",
  url="https://www.sciencedirect.com/science/article/pii/S026322411831203X"
}