Statistično načrtovanje postopka apretiranja viskoznih tkanin iz močno vite preje: 2. del: Apretiranje z neformaldehidnimi reagenti

Titel in Übersetzung: Statistical designing of finishing process of viscose fabrics made from highly twisted yarn: Part 2: Finishing with the non-formaldehyde reagents: Part 2: Finishing with the non-formaldehyde reagents

Severina Iskrač*, Simona Strnad, Suzana Jus, Karin Stana Kleinschek, Majda Sfiligoj Smole, Bojana Vončina, Mojca Štrafela

*Korrespondierende/r Autor/-in für diese Arbeit

Publikation: Beitrag in Zeitung/MagazinArtikelBegutachtung

Abstract

The paper presents the results of optimizing cross-linking of fabrics made from highly twisted viscose yarn by using the non-formaldehyde reagents. The influence of the cross-linking reagent concentration, catalyst and non-ionogenic softener on some applicability properties of the finished viscose fabric was investigated. The following parametres were monitored: the degree of viscose fibres swelling, breaking force, elongation at break and crease recovery angle as well as the influence of the finishing process on the colour of viscose fabrics made from highly twisted yarn. By using the cross-linking non-formaldehyde reagent the degree of swelling of viscose fibres decreased by 51.1-92.4 %, the crease recovery angle increased by 60-145 %, the breaking force decreased by 49-65 % and the elongation at break decreased by 31.6-37.6 %. The cross-linking process did not cause any noticeable colour deviations on dyed fabrics.
Titel in ÜbersetzungStatistical designing of finishing process of viscose fabrics made from highly twisted yarn: Part 2: Finishing with the non-formaldehyde reagents: Part 2: Finishing with the non-formaldehyde reagents
Originalspracheslowenisch
Seiten292-300
Seitenumfang9
Band47
Nummer9-12
FachbuchTekstilec
PublikationsstatusVeröffentlicht - 1 Sept. 2004
Extern publiziertJa

ASJC Scopus subject areas

  • Betriebswirtschaft und Internationales Management
  • Allgemeine Unternehmensführung und Buchhaltung
  • Polymere und Kunststoffe
  • Wirtschaftsingenieurwesen und Fertigungstechnik

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