• Title/Summary/Keyword: Al nonwoven fabric

Search Result 3, Processing Time 0.015 seconds

Effect of Chitosan Treatment on the Hand of Nonwoven Fabric (키토산 처리에 의한 부직포의 태 변화)

  • 신윤숙;손경희
    • Korean Journal of Human Ecology
    • /
    • v.1 no.2
    • /
    • pp.119-128
    • /
    • 1998
  • Nonwoven fabrics for diaper coverstock were treated with chitosan solution by pad-dry method. Two chitosans of different molecular weigh(Mw) with similar degree of deacetylation(DDA) were used: Mw 1,800(chitosan oligomer, DDA 84%). Effect of chitosan treatment on the mechanical properties was investigated using KES-FB system. Primary hand values were calculated from mechanical properties using the same equation as the men's suiting equation with minor modification, and total hand values were calculated using new KN-5LNW equation for nonwoven fabrics developed by Kawabata et al. Increase in chitosan treatment concentration increased B, 2HB, WT, LT and RC, and decreased WC continuously. Chitosan treatment affected other mechanical properties regardless of molecular weight. Considering primary hand values obtained from mechanical properties, it was found that chitosan of Mw 180,000 and chitosan oligomer provided softer, smoother, and more bulky at below 0.05% and above 0.5% treatment concentration respectively. Samples treated with 1.0% chitosan oligomer solution, and 0.01% chitosan solution of Mw 180,000 showed the best total hand values. (Korean J Human Ecology 1(2):119∼128, 1998)

  • PDF

Performance Evaluation of Molten Metal Splash Protective Fabrics (용융금속 방호보호복소재의 성능수준 평가)

  • Park, Pyoung-Kyu;Jin, Lu;Yoon, Kee-Jong
    • Korean Journal of Hazardous Materials
    • /
    • v.6 no.2
    • /
    • pp.55-61
    • /
    • 2018
  • In this study, the molten metal protective performance of various molten metal protective clothing materials such as herringbone twill laminated aluminium foils, oxydized-polyacrylonitrile laminated with aluminium deposited polyethylene terephthalate films, twill fabric laminated with aluminium deposited polyethylene terephthalate films and nonwoven laminated with aluminum deposited polyethylene terephthalate films, were evaluated according to modified EN ISO 9185. The results showed that the molten metal protective performance of tested samples improved with the increase in fabric structure density, weight and thickness. In addition the effect of the thickness of aluminum foil on the molten metal protective performance is not significant. It was found the fabric is more important in the molten metal splash protective clothing.

Synthesis of Amino-type Anion Exchanger from Acrylic Acid Grafted Polypropylene Nonwoven Fabric and Its Ion-Exchange Property (아크릴산 그라프트 폴리프로필렌 부직포로부터 아민형 음이온 교환체의 합성 및 이온교환특성(I))

  • Park, Hyun-Ju;Na, Choon-Ki
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.28 no.5
    • /
    • pp.527-534
    • /
    • 2006
  • The purpose of this study is the development of more effective filter-type polymer adsorbent for removal of anionic pollutants from wastewater. In order to synthesize the polymer adsorbent that possesses anionic exchangeable function, carboxyl(-COOH) group of PP-g-AA nonwoven fabric was converted into amine($-NH_2$) group by the chemical modification using diethylene triamine(DETA). FT-IR data indicate that amine group was introduced into PP-g-AA through amidation of grafted acrylic acid by reaction with DETA. The degree of amination increased with increase in the reaction time and temperature of the chemical modification process, and was significantly improved by the pre-swelling treatment of PP-g-AA with solvent and addition of metal chlorides as a catalyst in following order as $NH_4OH>MeOH{\geq}HCl{\geq}H_2O\;and\;AlCl_3>FeCl_3{\geq}SnCl_2{\gg}ZnCl_2{\geq}FeCl_2$, respectively. However, the addition of catalyst limited the reusability of DETA, hence was less useful from the viewpoint of cost effectiveness and waste management. The anion exchange capacity of the aminated PP-g-AA(PP-g-AA-Am) increased with increase in the degree of amination, but it reached maximum value at the degree of amination as about $50{\sim}60%$. The anion exchange capacity of PP-g-AA-Am was higher than those of commercial anion resins.