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Characterization of yield stress and slip behaviour of skin/hair care gels using steady flow and LAOS measurements and their correlation with sensorial attributes / S. Ozkan in INTERNATIONAL JOURNAL OF COSMETIC SCIENCE, Vol. 34, N° 2 (04/2012)
[article]
Titre : Characterization of yield stress and slip behaviour of skin/hair care gels using steady flow and LAOS measurements and their correlation with sensorial attributes Type de document : texte imprimé Auteurs : S. Ozkan, Auteur ; T. W. Gillece, Auteur ; L. Senak, Auteur ; David J. Moore, Auteur Année de publication : 2012 Article en page(s) : p. 193-201 Note générale : Bibliogr. Langues : Anglais (eng) Catégories : Acide polyacrylique
Analyse sensorielle
Caractérisation
Copolymères
Cosmétiques
Epaississants
Gels -- Emploi en cosmétologie
Maléique, Acide
Polyvinyl éther
Polyvinylpyrrolidone
RhéologieTags : 'Gel main/cheveux' 'Grande amplitude oscillatoire' Rhéologie 'Corrélation sensorielle' 'Limite élasticité' Index. décimale : 668.5 Parfums et cosmétiques Résumé : Gels made with three different polymers widely used as rheology modifiers in cosmetic formulations (cross-linked poly(acrylic acid), cross-linked poly(maleic acid-alt-methyl vinyl ether) copolymer and cross-linked poly(acrylic acid-co-vinyl pyrrolidone) copolymer) were characterized by rheological and sensory evaluation methods to determine the relationship between sensorial perception and corresponding rheological parameters. Both conventional rheological characterization methods and a more recent method, Fourier Transform Rheology with Large Amplitude Oscillatory Flow data (LAOS), were utilized to characterize the material with and without wall slip. Sensorial analyses were implemented in vivo to evaluate the perceived ease of initial and rub-out spreadability, cushion, pick-up and slipperiness attributes of the gels. Results were statistically analysed by both variance (ANOVA) and principle component analysis (PCA). Sensorial panel testing characteristics discriminated the three materials, and PCA analyses revealed that sensory attributes could be well predicted by rheological methods. Rheological experiments, without wall slip, revealed that gel strength in the linear viscoelastic region (LVR) and yield stress of these materials are similar, but exhibit significantly different wall slip and thixotropy behaviour in the low shear rate region under wall slip conditions. Above the critical shear rate, which corresponds to the yield stress, all tested materials did not slip and behaved as conventional, shear thinning polymeric fluids. In particular, the rheological parameters and sensorial perception of the 1% cross-linked vinyl pyrrolidone/acrylic acid copolymer were significantly affected by wall slip and/or thixotropy-related shear banding phenomena. Note de contenu : - MATERIALS AND METHODS : Rheological characterization (dynamic oscillatory measurements - Steady torsional flow experiments - Continuous shear rate ramp tests - extensional tests) - Sensory evaluation - Data analysis
- RESULTS AND DISCUSSION : Rheological characterization (steady torsional flow experiment - Continuous stress of shear rate ramp measurements to establish the shear rate dependency of shear stress and viscosity at different gap openings - Extensional tests - Sensory evaluation - Correlation of sensory ratings with conventional rheological parameters - Correlation of sensory ratings with large amplitude oscillaroty shear flow (LAOS) parameters (Chebyshev coefficients)DOI : 10.1111/j.1468-2494.2012.00702.x En ligne : https://onlinelibrary.wiley.com/doi/10.1111/j.1468-2494.2012.00702.x Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=14392
in INTERNATIONAL JOURNAL OF COSMETIC SCIENCE > Vol. 34, N° 2 (04/2012) . - p. 193-201[article]Réservation
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Code-barres Cote Support Localisation Section Disponibilité 13819 - Périodique Bibliothèque principale Documentaires Disponible CO2-laser treatment of indium tin oxide nanoparticle coatings on flexible polyethylene terephthalate substrates / Tobias Königer in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH, Vol. 7, N° 2 (03/2010)
[article]
Titre : CO2-laser treatment of indium tin oxide nanoparticle coatings on flexible polyethylene terephthalate substrates Type de document : texte imprimé Auteurs : Tobias Königer, Auteur ; Thomas Rechtenwald, Auteur ; Ihab Al-Naimi, Auteur ; Thomas Frick, Auteur ; Michael schmidtM, Auteur ; Helmut Münstedt, Auteur Année de publication : 2010 Article en page(s) : p. 261-269 Note générale : Bibliogr. Langues : Américain (ame) Tags : Revêtements 'Nanoparticule oxyde indium-étain' ITO 'Substrats Polyéthylène téréphtalate' 'Traitement laser CO2' 'Essai flexion oscillatoire' Index. décimale : 667.9 Revêtements et enduits Résumé : A CO2-laser treatment was used to improve the electrical conductivity of coatings of indium tin oxide (ITO) nanoparticles on flexible polyethyleneterephthalate (PET) substrates. The electrical conductivity and the transparency of CO2-laser-treated ITO nanoparticle coatings were characterized with regard to the application as transparent electrodes. Furthermore, the stability of the electrical conductivity under oscillatory bending was investigated. A specific resistance of 0.12 Ω cm is obtained by CO2-laser treatment without thermally damaging the PET film. The improvement of the electrical conductivity can be explained by a slight sinter neck formation. For a film thickness of 3 μm, a sheet resistance of 400 Ω/□ and a transmission in the visible range of 80 % were achieved. The stability of the electrical conductivity of CO2-laser-treated ITO nanoparticle coatings under bending was investigated using a specially constructed device for the application of various oscillatory bending loads. For a bending radius of 10 mm, the sheet resistance does not exceed 1000 Ω/□ after 300 bending cycles. Compared to commercial sputtered ITO coatings, CO2-laser-treated ITO nanoparticle coatings show a significant higher stability under oscillatory bending. DOI : 10.1007/s11998-009-9181-5 En ligne : https://link.springer.com/content/pdf/10.1007%2Fs11998-009-9181-5.pdf Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=9072
in JOURNAL OF COATINGS TECHNOLOGY AND RESEARCH > Vol. 7, N° 2 (03/2010) . - p. 261-269[article]Réservation
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Code-barres Cote Support Localisation Section Disponibilité 012083 - Périodique Bibliothèque principale Documentaires Disponible