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Claudia Ines Vallo
Researcher at National Scientific and Technical Research Council
Publications - 56
Citations - 1442
Claudia Ines Vallo is an academic researcher from National Scientific and Technical Research Council. The author has contributed to research in topics: Photopolymer & Polymerization. The author has an hindex of 22, co-authored 56 publications receiving 1317 citations. Previous affiliations of Claudia Ines Vallo include National University of Río Cuarto & National University of Mar del Plata.
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Journal ArticleDOI
Polymethylmethacrylate-based bone cement modified with hydroxyapatite.
Claudia Ines Vallo,Pablo E. Montemartini,Maria Alejandra Fanovich,José M. Porto López,Teresita Raquel Cuadrado +4 more
TL;DR: A commercial acrylic bone cement was modified by the incorporation of different weight fractions of polycrystalline hydroxyapatite (HA) to find that up to 15 wt% HA could be added for increases in flexural modulus and fracture toughness.
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Effect of Chemical Treatment on the Mechanical Properties of Starch-Based Blends Reinforced with Sisal Fibre
TL;DR: In this paper, the effect of chemical treatment on morphology, physical and chemical properties and tensile properties of fibres and composites were determined, and the results observed are supported by SEM analysis of the composite materials and the fibres.
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Photobleaching of camphorquinone during polymerization of dimethacrylate-based resins
TL;DR: CQ photoinitiates the polymerization of the UDMA monomer in the absence of amine and the efficiency of this process is comparable to that of traditional bis-GMA and bis-EMA monomers activated with CQ/amine.
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Effect of different photoinitiator systems on conversion profiles of a model unfilled light-cured resin.
TL;DR: NIR demonstrated to be a convenient method to follow the evolution of the monomer conversion during the photopolymerization of dental resins and of great utility as a method for determining the relative efficacy of different photoinitiator.
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Properties and structure of cyanate ester/polysulfone/organoclay nanocomposites
TL;DR: In this paper, a cyanate ester (CE) matrix has been modified with polysulfone and an organic montmorillonite (Nanofil 919).