LEM3

UMR CNRS 7239
UdL
CNRS
A&M

                          
Annuaire du laboratoire LEM3
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PELTIER Laurent

Ingénieur d'études Arts et Métiers - Département 1 MMSV

Téléphone : +33 (0)3-72-74-78-11 Bureau : 004-RDC (LEM3)
Fax : E-mail : laurent.peltier@ensam.eu

SELECT * FROM `publications` WHERE `publi` LIKE '%Peltier%' AND `annee` > '2007' ORDER BY `cls` ASC, `annee` DESC
Derniers Articles (triés par Type puis Année)
  • Pomarède, P., Meraghni, F., Peltier, L., Delalande, S., Declercq, N. F. (2018). Damage Evaluation in Woven Glass Reinforced Polyamide 6.6/6 Composites Using Ultrasound Phase-Shift Analysis and X-ray Tomography. Journal of Nondestructive Evaluation, (2018) 37(1), 12. https://doi.org/10.1007/s10921-018-0467-3 ACL
  • G. Mussot-Hoinard, W. Elmay, L. Peltier, P. Laheurte, Fatigue performance evaluation of a Nickel-free titanium-based alloy for biomedical application - Effect of thermomechanical treatments, Journal of the Mechanical Behavior of Biomedical Materials, Volume 71, July 2017, Pages 32–42 ACL
  • M. Fischer, P. Laheurte,  P. Acquier, D. Joguet, L. Peltier, T. Petithory, K. Anselme, P. Mille : Synthesis and characterization of Ti-27.5Nb alloy made by CLAD® additive manufacturing process for biomedical applications ; Materials Science and Engineering C, Volume 75, 1 June 2017, Pages 341–348 ACL
  • P.Laheurte, L. Peltier, P. Charbonnier : ressort horlogerie Alliage de titane ß métastable, ressort d'horlogerie à base d'un tel alliage et son procédé de fabrication ; brevet France n° 17 52503 du 24.03.2017 ACL
  • M. Fischer, D. Joguet, L. Peltier, P. Laheurte: In situ elaboration of a binary Ti-26Nb alloy by selective laser melting of elemental titanium and niobium mixed powders; Materials Science and Engineering C, 2016, Accepted ACL
  • M. Fischer, D. Joguet, L. Peltier, P. Laheurte ; In situ titanium alloy elaborated by selective laser melting of Ti and Nb mixed13th World Conference on Titanium,2015, Sand Diego, Californie ACTI
  • M. Fischer, L. Peltier, D. Boisselier, P. Acquier, P. Laheurte : Characterization of direct laser deposited low modulus Ti-26Nb alloy on Ti-6Al-4V for biomedical applications, International congress on applications of laser and electro-optics, 2015, Atlanta, USA. ACTI