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BERNARDO GARCIA, VICTORIA

PERSONAL INVESTIGADOR PREDOCTORAL FPU
 

Índice H en Scopus: 14
 

[][com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=75450]], camposKey:0142-9418 2023-01-01 Evaluation of methods to accurately characterize the thermal conductivity of micro-and nanocellular polymers based on poly(methyl-methacrylate) (PMMA) produced at lab-scale00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=72799]], camposKey:1388-6150 2022-11-01 Methodology for measuring the thermal conductivity of insulating samples with small dimensions by heat flow meter technique1252312533, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=72768]], camposKey:0032-3861 2022-01-01 Micronization as a solution for enhancing the thermal insulation of nanocellular poly(methyl-methacrylate) (PMMA)00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=65556]], camposKey:0896-8446 2021-11-01 Cold neutron transmission for the in-situ analysis of the gas diffusion in polymers00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=65557]], camposKey:0142-9418 2021-06-01 New non-destructive optical approach to determine the crystallization kinetics of PLA under a CO2 atmosphere with spatial and temporal resolution00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=61160]], camposKey:2073-4360 2021-01-01 Analysis of the foaming window for thermoplastic polyurethane with different hard segment contents00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=72772]], camposKey:2073-4360 2021-01-01 Cyclic gas dissolution foaming as an approach for simultaneously reducing cell size and relative density in nanocellular pmma00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=65555]], camposKey:0032-3861 2021-01-01 Easy-way production of highly transparent nanocellular polymers films00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=61145]], camposKey:2073-4360 2021-01-01 Effect of the molecular structure of tpu on the cellular structure of nanocellular polymers based on pmma/tpu blends00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=71929]], camposKey:2079-4991 2021-01-01 Nanostructure of PMMA/MAM blends prepared by out-of-equilibrium (Extrusion) and near-equilibrium (casting) self-assembly and their nanocellular or microcellular structure obtained from CO2 foaming28340, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=65553]], camposKey:0264-1275 2021-01-01 Novel approach based on autoclave bead foaming to produce expanded polycarbonate (EPC) bead foams with microcellular structure and controlled crystallinity00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=53123]], camposKey:0959-8103 2020-01-01 Influence of the viscosity of poly(methyl methacrylate) on the cellular structure of nanocellular materials7283, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=53124]], camposKey:1438-7492 2020-01-01 Nanocellular Polymers with a Gradient Cellular Structure Based on Poly(methyl methacrylate)/Thermoplastic Polyurethane Blends Produced by Gas Dissolution Foaming00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=54761]], camposKey:0927-7757 2020-01-01 On the interaction of infrared radiation and nanocellular polymers: First experimental determination of the extinction coefficient00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=57552]], camposKey:1438-7492 2020-01-01 Two-Stage Depressurization in Gas Dissolution Foaming: The Production of Nanocellular Materials Free of Defects00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=41919]], camposKey:0959-8103 2019-01-01 Anisotropy in nanocellular polymers promoted by the addition of needle-like sepiolites12041214, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=46956]], camposKey:0167-577X 2019-01-01 Highly anisotropic nanocellular polymers based on tri-phasic blends of PMMA with two nucleating agents00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=41926]], camposKey:0032-3861 2019-01-01 Low-density PMMA/MAM nanocellular polymers using low MAM contents: Production and characterization115124, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=41931]], camposKey:1438-7492 2019-01-01 Mechanical Properties of PMMA-Sepiolite Nanocellular Materials with a Bimodal Cellular Structure00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=41929]], camposKey:0032-3861 2019-01-01 Modeling the heat transfer by conduction of nanocellular polymers with bimodal cellular structures126137, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=42527]], camposKey:1996-1944 2019-01-01 Nanocellular Polymers: The Challenge of Creating Cells in the Nanoscale00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=41920]], camposKey:1438-1656 2019-01-01 Overcoming the Challenge of Producing Large and Flat Nanocellular Polymers: A Study with PMMA00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=46957]], camposKey:0167-577X 2019-01-01 Production of PMMA-based nanocellular polymers using low demanding saturation conditions00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=46958]], camposKey:0032-3861 2019-01-01 The influence of cell size on the mechanical properties of nanocellular PMMA00, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=53125]], camposKey:1364-5021 2019-01-01 The mechanics of solid-state nanofoaming123, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=41922]], camposKey:0032-3861 2019-01-01 Transparent nanocellular PMMA: Characterization and modeling of the optical properties1623, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=41936]], camposKey:0032-3861 2018-01-01 Understanding the role of MAM molecular weight in the production of PMMA/MAM nanocellular polymers262270, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=3021]], camposKey:0264-1275 2017-01-01 Highly anisotropic crosslinked HDPE foams with a controlled anisotropy ratio: Production and characterization of the cellular structure and mechanical properties8391, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=37689]], camposKey:1438-7492 2017-01-01 Key Production Parameters to Obtain Transparent Nanocellular PMMA15, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=37694]], camposKey:0032-3861 2017-01-01 Nanoporous PMMA foams with templated pore size obtained by localized in situ synthesis of nanoparticles and CO2 foaming176185, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=37692]], camposKey:0014-3057 2017-01-01 PMMA-sepiolite nanocomposites as new promising materials for the production of nanocellular polymers1026, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=3037]], camposKey:2073-4360 2016-01-01 Low Density Nanocellular Polymers Based on PMMA Produced by Gas Dissolution Foaming: Fabrication and Cellular Structure Characterization2650, com.sigma.fs3.argos.domain.gpc.GpcArticlesRev[id=com.sigma.fs3.argos.domain.gpc.GpcArticlesRevPK[ifcactivitat=ARE, ifccomptador=3044]], camposKey:0167-577X 2016-01-01 Production and characterization of nanocellular polyphenylsulfone foams155158][CapitolsLlib{id=com.sigma.fs3.argos.domain.gpc.GpcCapitolsLlibPK[ifcactivitat=CAP, ifccomptador=19935]},camposKey: 6247 6253 Evolution of the practical training in Materials Physics: from a constrained research in the Polymer Science field to a multidisciplinary methodology 8409027097Edulearn 18 1 2018-01-01 IATED Academy , CapitolsLlib{id=com.sigma.fs3.argos.domain.gpc.GpcCapitolsLlibPK[ifcactivitat=CAP, ifccomptador=19936]},camposKey: 6184 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Artículos de revista (33)

Sanchez-Calderon I.; Sillero A.; Lizalde-Arroyo F.; Bernardo V.; Martin-de-Leon J.; Rodriguez-Perez M.A. Evaluation of methods to accurately characterize the thermal conductivity of micro-and nanocellular polymers based on poly(methyl-methacrylate) (PMMA) produced at lab-scale . POLYMER TESTING 2023; 117.

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Capítulos de libros (5)

Lopez Gonzalez, Eduardo; Muñoz Pascual, Santiago; Bernardo Garcia, Victoria; Laguna Gutierrez, Ester; Dale, B G; Perez Tamarit, Saul; Pinto, Javier; Rodriguez Perez, Miguel Angel. Evolution of the practical training in Materials Physics: from a constrained research in the Polymer Science field to a multidisciplinary methodology . En: -. Edulearn 18. IATED Academy 2018. p. 6247-6253.


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Proyectos (6)

PRODUCCIÓN SOSTENIBLE DE SUPER AISLANTES TÉRMICOS BASADOS EN POLÍMEROS NANOCELULARES CON CONDUCTIVIDAD TÉRMICA REDUCIDA A TRAVÉS DEL INCREMENTO DE LA DISPERSIÓN DE FONONES. Equipo Investigadores: RODRIGUEZ PEREZ, MIGUEL ANGEL (IP); MARTIN DE LEON, JUDIT; CALVO CABEZON, MARIA BLANCA. Equipo de Trabajo: IZAGUIRRE ALTUNA, LAURA; LAGUNA GUTIERREZ, ESTER; OLIVEIRA SALMAZO, LEANDRA; BERNARDO GARCIA, VICTORIA; CIMAVILLA ROMAN, PAULA; CUADRA RODRIGUEZ, DANIEL; MERILLAS VALERO, BEATRIZ; SANCHEZ CALDERON, ISMAEL; YUSTE SANCHEZ, VANESA; AMEZUA ARRANZ, CLARA; SAIZ ARROYO, CRISTINA. TED2021-130965B-I00. Entidades Participantes: UNIVERSIDAD DE VALLADOLID (UVa). Entidades Financiadoras: AGENCIA ESTATAL DE INVESTIGACIÓN, UNIÓN EUROPEA.-NEXT GENERATION UE, PLAN DE RECUPERACIÓN, TRANSFORMACIÓN Y RESILIENCIA, MICINN. MINISTERIO DE CIENCIA E INNOVACIÓN . 01/12/2022-30/11/2024

Next Generation-UEMnisterio de Ciencia e InnovaciónAEIPlan de Recuperación, transformación y Resiliencia
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Convenios/Contratos OTC (4)

EVALUACIÓN DE LA VIABILIDAD PARA PRODUCIR POLÍMEROS NANOCELULARES USANDO MUY ELEVADAS PRESIONES.. Equipo Investigadores: RODRIGUEZ PEREZ, MIGUEL ANGEL (IP); CUADRA RODRIGUEZ, DANIEL; MARTIN DE LEON, JUDIT; PINTO SANZ, JAVIER; BERNARDO GARCIA, VICTORIA. Entidades Participantes: FUNDACION GENERAL DE LA UNIVERSIDAD DE VALLADOLID.. Entidades Financiadoras: HIPERBARIC SAU.. 20/02/2019

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OTROS

Tesis doctorales (2)

SANCHEZ CALDERON, ISMAEL STUDY OF THE THERMAL CONDUCTIVITY OF BULK AND MICRONIZED NANOCELLULAR POLYMERS. Universidad de Valladolid; 2023

 
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Congresos (2)

FOAMS 2017., BAYREUTH ( ALEMANIA ) 09/01/2017 -
(Asistencia). BERNARDO GARCIA, VICTORIA. FOAMS 2017.
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