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Investigating resistance of cement and polymer mortar materials to rapid freeze-thaw cycling : comparative study and evaluation of test methodologies

Title
Investigating resistance of cement and polymer mortar materials to rapid freeze-thaw cycling : comparative study and evaluation of test methodologies
Type
Article in International Conference Proceedings Book
Year
2009
Authors
Maria Cristina dos Santos Ribeiro
(Author)
FEUP
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Luís Filipe Pereira Juvantes
(Author)
FEUP
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José Fernando Dias Rodrigues
(Author)
FEUP
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António Joaquim Mendes Ferreira
(Author)
FEUP
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António Torres Marques
(Author)
FEUP
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Conference proceedings International
Pages: 1-6
V International Materials Symposium MATERIAIS 2009 (XIV meeting of SPM - Sociedade Portuguesa de Materiais)
Instituto Superior Técnico, Lisbon, Portugal, 5-8 April 2009
Scientific classification
FOS: Engineering and technology > Materials engineering
CORDIS: Technological sciences > Engineering > Materials engineering
Other information
Abstract (EN): The aim of this investigation work is threefold: 1) To analyse and quantify freeze-thaw resistance of glass fibre reinforced epoxy polymer mortars, comparatively to both normal cement mortars and plain epoxy polymer mortars; 2) To determine glass fibre reinforcement effect on freeze-thaw behaviour; and 3) To evaluate the reliability of ASTM C666M-03 test methodology for the assessment of freeze-thaw resistance of polymer concrete materials. For this purpose several test specimens, normal cement mortars, plain and glass-fibre reinforced epoxy polymer mortars were submitted to freeze-thaw cycling between 36 up to 300 cycles, according to the above norm. Dynamic elasticity modulus, with basis on fundamental resonance frequency measurements, was calculated every 36 cycles, and the correspondent relative dynamic elasticity modulus was determined for each cycling period. In order to assess the reliability of this non-destructive test methodology, three specimens of each formulation were withdrawn at regular periods and tested in bending and compression. Relative mechanical strengths, as function of conditioning period, were compared with correspondent relative dynamic modulus of elasticity.
Language: Portuguese
Type (Professor's evaluation): Scientific
Contact: juvandes@fe.up.pt
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