Pierre Marchand
University of Paris
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Publication
Featured researches published by Pierre Marchand.
Journal of Structural Engineering-asce | 2014
Florent Baby; Pierre Marchand; François Toutlemonde
To quantify the safety margin of shear design provisions for ultrahigh performance fiber-reinforced concrete (UHPFRC), an experimental campaign has been performed. In a four-point bending configuration, shear tests have been conducted on 11 3-m long and 0.38-m high I-shaped girders with varied types of shear reinforcement (stirrups and/or fibers, or neither), combined with longitudinal prestressing or mild steel reinforcing bars. These shear tests have been analyzed in conjunction with a complete materials characterization. To identify the contribution of the fibers to the shear response, prisms have been extracted horizontally, vertically, at 30 and 45° in both undamaged ends of the beams to determine the effective orientation factor. Through this unique combination of data, detailed in the writers’ paper, design provisions and models have been developed, as detailed in a companion paper.
Aci Materials Journal | 2012
Florent Baby; Benjamin A. Graybeal; Pierre Marchand; François Toutlemonde
This article discusses how the tensile stress-strain response of ultra-high-performance fiber-reinforced concrete (UHPFRC) is a fundamental constitutive property, and reliable knowledge of this response is necessary for appropriate application of the tensile-carrying capacity of such advanced cement-based materials. Flexural test methods whose implementation is well-established present a test procedure capable of assessing this property. Nevertheless, these methods provide indirect information and need to be complemented by inverse analysis to quantify the intrinsic tensile behavior of tested materials. Moreover, bias or scatter can be induced when simplified constitutive laws are assumed for the analysis. Flexural tests were completed on multiple types of commercially available UHPFRC. Relying on direct strain measurements, a new inverse analysis method is presented and qualified, compared with an existing simplified method, and also compared with results from direct tensile tests (DTTs). The advantages and limitations of the experimental and analysis methods were derived.
Journal of Structural Engineering-asce | 2014
Florent Baby; Pierre Marchand; François Toutlemonde
AbstractThe safety margin of shear design provisions for ultrahigh performance fiber reinforced concrete (UHPFRC) requires quantification prior to widespread use. To this aim, the results of a dedicated experimental campaign described in a companion paper and available data from the literature have been used. Different models have been tested for predicting the shear-cracking strength and the ultimate shear capacity of UHPFRC beams. The lack of characterization of the tensile UHPFRC behavior often impairs the quality of data obtained from shear tests on UHPFRC beams. This issue has been partially overcome by approximating the UHPFRC postcracking strength under tension from fibers and matrix properties in using the variable engagement model. The safety of the French recommendations for UHPFRC has been confirmed, and improved models for serviceability-limit states prediction and realistic accounting of critical shear-cracking have been developed.
Journal of Constructional Steel Research | 2013
Lamine Dieng; Pierre Marchand; Christian Tessier; François Toutlemonde
Materials and Structures | 2016
Pierre Marchand; Florent Baby; Aghiad Khadour; Thomas Battesti; Philippe Rivillon; Marc Quiertant; Hong-Hai Nguyen; Grégory Généreux; Jean-Paul Deveaud; Alain Simon; François Toutlemonde
UHPFRC 2013 - International Symposium on Ultra-High Performance Fibre-Reinforced Concrete | 2013
Alain Simon; Dominique Corvez; Pierre Marchand
Hipermat | 2012
Benjamin A. Graybeal; Florent Baby; Pierre Marchand; François Toutlemonde
FraMCoS | 2010
Florent Baby; Joël Billo; Jean Claude Renaud; Cyril Massotte; Pierre Marchand; François Toutlemonde; Alain Simon; Philippe Lussou
UHPFRC 2013 - International Symposium on Ultra-High Performance Fibre-Reinforced Concrete | 2013
François Toutlemonde; Alain Simon; Philippe Rivillon; Pierre Marchand; Florent Baby; Marc Quiertant; Aghiad Khadour; Julien Cordier; Thomas Battesti
Hipermat | 2012
Pierre Marchand; Lamine Dieng; Florent Baby; Jc Renaud; Cyril Massotte; Marc Estivin; Joël Billo; Céline Bazin; Romain Lapeyrere; Dominique Siegert; François Toutlemonde