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Paper physics: Paper and board surface roughness characterization using laser profilometry and gray level cooccurrence matrix
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Aleš Hladnik
Veröffentlicht/Copyright:
19. Juli 2018
Published Online: 2018-07-19
Published in Print: 2011-01-01
© 2018 by Walter de Gruyter Berlin/Boston
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Artikel in diesem Heft
- Mechanical Pulping: The influence of fibre wall thickness and fibril angle on fibre development in the TMP process
- Mechanical Pulping: Force-based characterization of refining intensity
- Mechanical Pulping: Characterization of fiber wall surface structure of chemically modified TMP fibers from Norway spruce
- Improvement of energy efficiency in TMP refining by selective wood disintegration and targeted application of chemicals
- Mechanical Pulping: Peroxide-based ATMP refining of spruce: energy efficiency, fibre properties and pulp quality
- Mechanical Pulping: Flocculation of colloidal wood extractives in process water from precompression of chips in thermomechanical pulping
- Mechanical Pulping: Removal of dissolved and colloidal substances from TMP process water using dissolved air flotation. Laboratory tests
- Chemical Pulping: The influence of properties in cellulose pulps on the reactivity in viscose manufacturing
- Chemical Pulping: Fenton’s reaction: a simple and versatile method to structurally modify commercial lignosulphonates
- Paper physics: Paper and board surface roughness characterization using laser profilometry and gray level cooccurrence matrix
- Papermaking: MD strain and bagginess due to calendering
- Coating: Incorporation of laccase in pigment coating for bioactive paper applications
- Coating: Misting and the effect of rheological properties of the coating fluid
- Printing: Printed sensor and electric field assisted wetting on a natural fibre based substrate
- Paper-ink interactions: Microscale droplet absorption into paper for inkjet printing
- Paper-ink interactions: Response to isopropanol or ionic/non-ionic surfactant in the competitive imbibition of water and alkane into calcium carbonate coating structures
Schlagwörter für diesen Artikel
Paper roughness;
Surface topography;
Image processing;
Texture analysis;
Gray level cooccurrence matrix
Artikel in diesem Heft
- Mechanical Pulping: The influence of fibre wall thickness and fibril angle on fibre development in the TMP process
- Mechanical Pulping: Force-based characterization of refining intensity
- Mechanical Pulping: Characterization of fiber wall surface structure of chemically modified TMP fibers from Norway spruce
- Improvement of energy efficiency in TMP refining by selective wood disintegration and targeted application of chemicals
- Mechanical Pulping: Peroxide-based ATMP refining of spruce: energy efficiency, fibre properties and pulp quality
- Mechanical Pulping: Flocculation of colloidal wood extractives in process water from precompression of chips in thermomechanical pulping
- Mechanical Pulping: Removal of dissolved and colloidal substances from TMP process water using dissolved air flotation. Laboratory tests
- Chemical Pulping: The influence of properties in cellulose pulps on the reactivity in viscose manufacturing
- Chemical Pulping: Fenton’s reaction: a simple and versatile method to structurally modify commercial lignosulphonates
- Paper physics: Paper and board surface roughness characterization using laser profilometry and gray level cooccurrence matrix
- Papermaking: MD strain and bagginess due to calendering
- Coating: Incorporation of laccase in pigment coating for bioactive paper applications
- Coating: Misting and the effect of rheological properties of the coating fluid
- Printing: Printed sensor and electric field assisted wetting on a natural fibre based substrate
- Paper-ink interactions: Microscale droplet absorption into paper for inkjet printing
- Paper-ink interactions: Response to isopropanol or ionic/non-ionic surfactant in the competitive imbibition of water and alkane into calcium carbonate coating structures