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Assessment of the Thermal Shock Resistance Figures of Merit of Al<inf>2</inf>W<inf>3</inf>O<inf>12</inf>, a Low Thermal Expansion Ceramic
ArticleAbstract: Zero thermal expansion phases from the A2M3O12 and related thermomiotic (negative thermal expansion)Palabras claves:Autores:Avillez R.R., Johnson M.B., Marco Vinicio Guamán Alarcón, Marinkovic B.A., Patricia I. Pontón, Prisco L.P., Romao C.P., White M.A.Fuentes:scopusData supporting micromechanical models for the estimation of Young's modulus and coefficient of thermal expansion of titanate nanotube/Y<inf>2</inf>W<inf>3</inf>O<inf>12</inf>/HDPE ternary composites
OtherAbstract: This article presents several micromechanical models to pbkp_redict the Young's modulus and the coefPalabras claves:Coefficient of thermal expansion, Elastic constants, Micromechanics, Thermomiotics, Three-phase composites, Titanate nanostructureAutores:Johnson M.B., Marco Vinicio Guamán Alarcón, Marinkovic B.A., Patricia I. Pontón, White M.A., Yamada K.Fuentes:scopusAl<inf>2</inf>Mo<inf>3</inf>O<inf>12</inf>/polyethylene composites with reduced coefficient of thermal expansion
ArticleAbstract: Recently, polymer composites reinforced with low fractions of thermomiotic nanoceramics have triggerPalabras claves:Autores:D'Almeida J.R.M., Mancic L., Marinkovic B.A., Patricia I. Pontón, Romao C.P., Soares A., White M.A.Fuentes:googlescopusNear-zero thermal expansion and phase transition in In<inf>0.5</inf>(ZrMg)<inf>0.75</inf>Mo<inf>3</inf>O<inf>12</inf>
ArticleAbstract: Physical properties of In0.5(ZrMg)0.75Mo3O12, including the coefficient of thermal expansion, phasePalabras claves:phase transformation, Raman spectroscopy, X-ray diffraction (XRD)Autores:Marinkovic B.A., Paraguassu W., Patricia I. Pontón, Prisco L.P., Romao C.P., White M.A.Fuentes:scopusNegative and Near-Zero Thermal Expansion in A <inf>2</inf> M <inf>3</inf>O<inf>12</inf> and Related Ceramic Families: A Review
ReviewAbstract: This review presents the history of materials in the A2M3O12 and related ceramic families, includingPalabras claves:Applications, composite, Hygroscopicity, phase transition, Physical properties, sintering, thermal expansionAutores:Marinkovic B.A., Moreira T., Patricia I. Pontón, Romao C.P., White M.A.Fuentes:googlescopusRelationship between sintering methods and physical properties of the low positive thermal expansion material Al<inf>2</inf>W<inf>3</inf>O<inf>12</inf>
ArticleAbstract: Ceramic materials from the A2M3O12 family with near-zero thermal expansion are good candidates for aPalabras claves:hardness, Mechanical properties, Nanoparticles, optical materials/properties, spark plasma sinteringAutores:Costa A.M.L.M., da Costa Neto C.A., Marinkovic B.A., Marzano M., Patricia I. Pontón, Prisco L.P., Romao C.P., Sweet G., White M.A.Fuentes:googlescopusSolubility limit of Zn<sup>2+</sup> in low thermal expansion ZrMgMo<inf>3</inf>O<inf>12</inf> and its influence on phase transition temperature
ArticleAbstract: Low thermal expansion in ABM3O12 phases, such as ZrMgMo3O12, have drawn significant attention due toPalabras claves:A M O 2 3 12, In situ XRPD, negative thermal expansion, Thermal shock resistanceAutores:Garcia F., Johnson M.B., Madrid A., Marinkovic B.A., Patricia I. Pontón, White M.A.Fuentes:googlescopusThe effect of titanate nanotube/Y<inf>2</inf>W<inf>3</inf>O<inf>12</inf> hybrid fillers on mechanical and thermal properties of HDPE-based composites
ArticleAbstract: Hybrid fillers have triggered significant research in the field of polymer-based composites becausePalabras claves:Micromechanics, Ternary composite, thermal conductivity, Thermomiotics, Titanate nanostructureAutores:Costa A.M.L.M., Johnson M.B., Marco Vinicio Guamán Alarcón, Marinkovic B.A., Pandoli O., Patricia I. Pontón, White M.A., Yamada K.Fuentes:scopus