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Sol–Gel Coating on AZ91D Using the Box–Behnken Design.’’ J. Sol Gel Sci. Technol. , 59 640–649 (2011) 245. Zomorodian, A, et al., ‘‘Anti-corrosion Performance of a New Silane Coating for Corrosion Protection of AZ31 Magnesium Alloy in Hank’s Solution.’’ Surf. Coat. Tech- nol. , 206 4368–4375 (2012) 246. Murillo-Gutie ´rrez, NV, Ansart, F, Bonino, J-P, Menu, M- J, Gressier, M, ‘‘Protection Against Corrosion of Magne- sium Alloys with Both Conversion Layer and Sol–Gel Coating.’’ Surf. Coat. Technol. , 232 606–615 (2013) 247. Brusciotti, F, et al., ‘‘Hybrid Epoxy–Silane Coatings for Improved Corrosion Protection of Mg Alloy.’’ Corros. Sci. , 67 82–90 (2013) 248. Molna ´r, P, Ostapovets, A, Ja ¨ger, A, ‘‘Reversible Motion of Twin Boundaries in AZ31 Alloy and New Design of Magnesium Alloys as Smart Materials.’’ Mater. Des. , 56 509–516 (2014) 249. Alam, ME, Hamouda, AMS, Nguyen, QB, Gupta, M, ‘‘Improving Microstructural and Mechanical Response of New AZ41 and AZ51 Magnesium Alloys Through Simul- taneous Addition of Nano-sized Al 2 O 3 Particulates and Ca.’’ J. Alloys Compd. , 574 565–572 (2013) 250. Li, ZM, et al., ‘‘Improved High Cycle Fatigue Properties of a New Magnesium Alloy.’’ Mater. Sci. Eng. A , 582 170– 177 (2013) 251. Jiang, J, et al., ‘‘Microstructure and Mechanical Properties of AZ61 Magnesium Alloy Parts Achieved by Thixo- extruding Semisolid Billets Prepared by New SIMA.’’ Trans. Nonferrous Met. Soc. China , 23 576–585 (2013) 252. Pan, F, et al., ‘‘Key R&D Activities for Development of New Types of Wrought Magnesium Alloys in China.’’ Trans. Nonferrous Met. Soc. China , 20 1249–1258 (2010) 253. Alam, ME, Han, S, Nguyen, QB, Salem Hamouda, AM, Gupta, M, ‘‘Development of New Magnesium Based Alloys and Their Nanocomposites.’’ J. Alloys Compd. , 509 8522–8529 (2011) 254. Chen, TJ, Wang, W, Zhang, DH, Ma, Y, Hao, Y, ‘‘Development of a New Magnesium Alloy ZW21.’’ Mater. Des. , 44 555–565 (2013) 255. Sendova, M, Willis, K, ‘‘Spiral and Curved Periodic Crack Patterns in Sol–Gel Films.’’ Appl. Phys. Mater. Sci. Process. , 76 957–959 (2003) 256. Latellaa, BA, Barbe ´a, CJ, Cassidya, DJ, Lia, H, Ignatb, M, ‘‘Mechanical Stability and Decohesion of Sol–Gel Hybrid Coatings on Metallic Substrates.’’ Rev. Mate ´r. , 10 199–204 (2005) 257. Castro, Y, Ferrari, B, Moreno, R, ‘‘Silica Sol–Gel Coatings on Metals Produced by EPD.’’ J. Sol Gel Sci. Technol. , 26 735–739 (2003) 258. Arkles, B, ‘‘Commercial Application of Sol–Gel-Derived Hybrid Materials.’’ MRS Bull. , 26 402–408 (2001) 259. Ghosh, SK. In: Ghosh, SK (ed.) Self-healing Materials , pp. 1–28. Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim , 2008. 5376.ch1/summary 260. Trabelsi, W, Cecilio, P, Ferreira, MGS, Montemor, MF, ‘‘Electrochemical Assessment of the Self-healing Proper- ties of Ce-Doped Silane Solutions for the Pre-treatment of Galvanised Steel Substrates.’’ Prog. Org. Coat. , 54 276–284 (2005) 261. Shchukin, DG, Zheludkevich, M, Mo ¨hwald, H, ‘‘Feedback Active Coatings Based on Incorporated Nanocontainers.’’ J. Mater. Chem. , 16 4561–4566 (2006) 262. Lamaka, SV, et al., ‘‘TiOx Self-assembled Networks Prepared by Templating Approach as Nanostructured Reservoirs for Self-healing Anticorrosion Pre-treat- ments.’’ Electrochem. Commun. , 8 421–428 (2006) 263. Lamaka, SV, et al., ‘‘Nanoporous Titania Interlayer as Reservoir of Corrosion Inhibitors for Coatings with Self- healing Ability.’’ Prog. Org. Coat. , 58 127–135 (2007) 264. Yabuki, A, Yamagami, H, Noishiki, K, ‘‘Barrier and Self- healing Abilities of Corrosion Protective Polymer Coat- ings and Metal Powders for Aluminum Alloys.’’
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