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Institution

Mines ParisTech

EducationParis, France
About: Mines ParisTech is a education organization based out in Paris, France. It is known for research contribution in the topics: Finite element method & Microstructure. The organization has 6564 authors who have published 11676 publications receiving 359898 citations. The organization is also known as: École nationale supérieure des mines de Paris & École des mines de Paris.


Papers
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Journal ArticleDOI
TL;DR: In this paper, the authors investigate the importance of time dependent phenomena in the cyclic behavior of the 304L SS at room temperature and demonstrate that the behavior is strongly rate dependent.

100 citations

Journal ArticleDOI
TL;DR: This work investigated the development of photochemical processes, emphasizing their capacity to degrade triazine by photolytic and photocatalytic mode, and showed that according to a medium pressure mercury source (UV-Vis irradiation), thephotolytic degradation of atrazine was very efficient, with a best atrazin degradation half-life shorter that 5 min.

100 citations

Journal ArticleDOI
TL;DR: The interactions between cement and a clayey host-rock of an underground repository for intermediate-level radioactive waste are studied with the reactive transport code HYTEC for supporting performance assessment.

100 citations

Journal ArticleDOI
TL;DR: The results indicate that the number of graphene layers on top of Ni films is controlled by the nucleation process on the Ni surface rather than by the carbon content in the Ni film.
Abstract: The synthesis of few-layered graphene is performed by ion implantation of carbon species in thin nickel films, followed by high temperature annealing and quenching. Although ion implantation enables a precise control of the carbon content and of the uniformity of the in-plane carbon concentration in the Ni films before annealing, we observe thickness non-uniformities in the synthesized graphene layers after high temperature annealing. These non-uniformities are probably induced by the heterogeneous distribution/topography of the graphene nucleation sites on the Ni surface. Taken altogether, our results indicate that the number of graphene layers on top of Ni films is controlled by the nucleation process on the Ni surface rather than by the carbon content in the Ni film.

100 citations

Journal ArticleDOI
X. Han1, Jacques Besson1, Samuel Forest1, Benoit Tanguy, Stéphane Bugat 
TL;DR: In this paper, a yield function for single crystals containing voids was developed based on a variational approach, which was phenomenologically extended by modifying the dependence on the mean stress and introducing three adjustable parameters.

100 citations


Authors

Showing all 6591 results

NameH-indexPapersCitations
Francis Bach11048454944
Olivier Delattre10349039258
Richard M. Murray9771169016
Bruno Latour9636494864
George G. Malliaras9438228533
George S. Wilson8871633034
Zhong-Ping Jiang8159724279
F. Liu8042823869
Kazu Suenaga7532926287
Carlo Adamo7544436092
Edith Heard7519623899
Enrico Zio73112723809
John J. Jonas7037921544
Bernard Asselain6940923648
Eric Guibal6929416397
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202315
202264
2021274
2020260
2019250
2018249