LARGE AMPLITUDE OSCILLATORY SHEAR 155 (11) L. Gilbert, G. Savary, M. Grisel, and C. Picard, Predicting sensory texture properties of cosmetic emul- sions by physical measurements, Chemometr. Intell. Lab., 124, 24–31 (2013). (12) S. Ozkan, T. W. Gillece, L. Senak, and D. J. Moore, Characterization of yield stress and slip behaviour of skin/hair care gels using steady fl ow and LAOS measurements and their correlation with sensorial attributes, Int. J. Cosmet. Sci., 34, 193–201 (2012). (13) U. Yilmazer, and D. Kalyon, Slip effects in capillary and parallel disc torsional fl ows of highly fi lled suspensions, J. Rheol., 33, 1197–1212 (1989). (14) R. Buscal, Wall slip in dispersion rheology, J. Rheol., 54, 1177–1183 (2010). (15) A. Bot, I. A. van Amerongen, R. D. Groot, N. L. Hoekstra, and W. G. M. Agterof, Large deformation rheology of gelatin gels, Polym. Gels Netw., 4, 189–227 (1996). (16) R. H. Ewoldt, A. E. Hosoi, and G. H. McKinley, New measures for characterizing nonlinear viscoelastic- ity in large amplitude oscillatory shear, J. Rheol., 52, 1427–1458 (2008). (17) D. M. Kalyon, Shear viscosity and wall slip behavior of a viscoplastic hydrogel, J. Rheol., 58, 513–535 (2014). (18) R. A. Freitas Jr., Nanomedicine, Volume I: Basic Capabilities. (Landes Bioscience, Georgetown, TX, 1999). (19) D. J. Panther, and S. E. Jacob, The importance of acidifi cation in atopic eczema: An underexplored av- enue for treatment, J. Clin. Med., 5, 970–978 (2015). (20) N. Nakagawa, S. Sakai, M. Matsumoto, K. Yamada, M. Nagano, T. Yuki, Y. Sumida, and H. Uchiwa, Relationship between NMF (lactate and potassium) content and the physical properties of the stratum corneum in healthy subjects, J. Invest. Dermatol., 122, 755–763 (2004). (21) R. H. Ewoldt, P. Winter, J. Maxey, and G. H. McKinley, Large amplitude oscillatory shear of pseudo- plastic and elastoviscoplastic materials, Rheol. Acta, 49(2), 191–212 (2010). (22) R. L. McMullen, M. Gorcea, and S. Chen, “Emulsions and Their Characterization by Texture Profi le Analysis,” in Formulating Topical Applications—A Practical Guide, 1st Ed, N. Dayan, Ed. (Allured Books, Carol Stream, IL, 2013), pp. 131–153. (23) M. C. Meilgaard, C. V. Civille, and B. T. Carr, Sensory Evaluation Techniques, 4th Ed. (CRC Press, Boca Raton, FL, 2007), pp. 7–24. (24) H. P. Kavehpour and G. H. McKinley, Tribo-rheometry: From gap-dependent rheology to tribology, Tribol. Lett., 17(2), 327–335 (2004).
JOURNAL OF COSMETIC SCIENCE 156 APPENDIX 1 Table AI Sunscreen Gel SPF-50 Ingredients Trade name INCI name % w/w Supplier Phase A Escalol™ 517 UV fi lter Butyl methoxydibenzoylmethane 3 Ashland Escalol™ S UV fi lter Bis-ethylhexyloxyphenol methoxyphenyl triazine 2 Ashland Escalol™ 587 UV fi lter Ethylhexyl salicylate 5 Ashland Escalol™ HMS UV fi lter Homosalate 10 Ashland Escalol™ 597 UV fi lter Octocrylene 8 Ashland X-Tend™ 226 ester Phenethyl benzoate 3 Ashland Phase B Ceraphyl™ 31 ester Lauryl lactate (and) myristyl lactate (and) cetyl lactate 6.5 Ashland Ceraphyl™ 230 ester Diisopropyl adipate 7 Ashland Ceraphyl™ ICA ester Isocetyl alcohol 2.5 Ashland Ceraphyl™ SLK ester Isodecyl neopentanoate 1 Ashland Jeechem® CTG Caprylic/capric triglyceride 1 Jeen International Pelemol® 89 Ethylhexyl isononanoate 4 Phoenix Chemical Phase C Allianz™ OPT polymer Acrylates/C12-22 alkyl methacrylate copolymer (and) water/Aqua (and) propylene glycol 1 Ashland Phase D SD Alcohol 40 B 200 Alcohol 41.79 - FlexiThix™ polymer PVP 4 Ashland FD&C Blue 1 (Sol. 0.1%) Water/aqua (and) CI 42090 (blue 1) 0.16 - D&C Green 5 (Sol. 0.1%) Water/aqua (and) CI 61570 (green 5) 0.05 - Total 100
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