Loïc Perrière
University of Paris
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Featured researches published by Loïc Perrière.
Materials research letters | 2017
L. Lilensten; Jean-Philippe Couzinié; Julie Bourgon; Loïc Perrière; G. Dirras; Frédéric Prima; I. Guillot
ABSTRACT A new bcc Ti-rich high-entropy alloy (HEA) of composition Ti35Zr27.5Hf27.5Nb5Ta5 was designed using the ‘d-electron alloy design’ approach. The tensile behavior displays a marked transformation-induced plasticity effect resulting in a high normalized work-hardening rate of 0.103 without loss of ductility when compared to the reference composition Ti20Zr20Hf20Nb20Ta20. In this paper, a detailed microstructural analysis was performed to understand the deformation process, revealing architectural-type microstructures and a high volume fraction (65%) of internally twinned stress-induced martensite α″ after mechanical testing. This study opens the way to mechanical properties optimization and enhancement of titanium-based HEAs by combining multiple alloying designs. IMPACT STATEMENT For the first time, proof is given that transformation-induced plasticity was triggered in a bcc refractory high-entropy alloy, leading to a twofold increase in the normalized work-hardening rate. GRAPHICAL ABSTRACT
Journal of Applied Physics | 2015
Nicolas Thurieau; Loïc Perrière; Mathilde Laurent-Brocq; Yannick Champion
Depth variation at constant load in instrumented nano-indentation was used to measure activation volume controlling shear band formation in the Mg65Cu12.5Ni12.5(Ce75La25)10 metallic glass. A series of measurements revealed a large scattering of the data spanning from 100 A3 to 800 A3. The distribution of values, which is not following a normal one, may be attributed to the atomic structure of metallic glasses with the absence of long range order, leading to different volume fraction of shear bands for independent experiments. Activation volume is analyzed considering the variation of shear band volume fraction leading to a unique value of a true activation volume. An interpretation for the distribution of values is proposed.
Materials Science Forum | 2016
Anita Heczel; L. Lilensten; Julie Bourgon; Loïc Perrière; Jean Philippe Couzine; I. Guillot; G. Dirras; Yi Huang; Terence G. Langdon; Jenő Gubicza
High-Pressure Torsion (HPT) is one of the most effective severe plastic deformation techniques in grain refinement. The goal of this study was to investigate the influence of HPT on the microstructure and hardness of a Ti-rich High-Entropy Alloy (HEA). The evolution of the grain size due to 1 turn of HPT was studied by transmission electron microscopy. Besides the refinement of the microstructure, a phase transition also occurred during HPT, as revealed by X-ray diffraction. The initial bcc structure transformed into a martensitic phase throughout the material. The features of this phase transformation were studied on a sample compressed to low strain values. The hardness as a function of the distance from the center in the HPT-processed disk was measured and correlated to the microstructure.
AIP Advances | 2018
Muriel Tyrman; Smail Ahmim; Alexandre Pasko; Victor H. Etgens; Frédéric Mazaleyrat; Simon Quetel-Weben; Loïc Perrière; Ivan Guillot
The metastable τ-phase of MnAl equi-atomic compound belongs to a family of ferromagnetic alloys with L10 crystal structure. Stabilization of the phase by adding 2 at. % using manganese carbide (Mn23C6) enhances the magnetization in relation with the increase in lattice volume. It is thus a promising candidate for rare-earth-free permanent magnets. Coercivity of Mn-Al-C alloys being still weak, there is an interest to see to which extend sintering/transformation of the ϵ-phase by Spark Plasma Sintering (SPS) can increase the coercivity and the anisotropy. The structural and the magnetic properties were studied for samples sintered at 550 °C under uniaxial pressure of 100, 200, 300 and 400 MPa. Coercivity, remanence and anistotropy appears with the sintering pressure. The high pressure applied while sintering produces preferential orientation of the flake-shaped grains which influences the remanence.
Acta Materialia | 2015
Mathilde Laurent-Brocq; Alfiya Akhatova; Loïc Perrière; Siham Chebini; Xavier Sauvage; Eric Leroy; Yannick Champion
Materials Letters | 2014
Jean-Philippe Couzinié; G. Dirras; Loïc Perrière; T. Chauveau; Eric Leroy; Yannick Champion; I. Guillot
Materials Letters | 2014
L. Lilensten; Jean-Philippe Couzinié; Loïc Perrière; Julie Bourgon; N. Emery; I. Guillot
Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2015
J.-Ph. Couzinié; L. Lilensten; Yannick Champion; G. Dirras; Loïc Perrière; I. Guillot
Journal of The European Ceramic Society | 2008
Léo Mazerolles; Loïc Perrière; Sylvie Lartigue-Korinek; Nicolas Piquet; Michel Parlier
Journal of The European Ceramic Society | 2007
Loïc Perrière; Damien Bregiroux; B. Naitali; Fabienne Audubert; Eric Champion; D.S. Smith; D. Bernache-Assollant