Peter RyserDr. Peter Ryser is a Professor Emeritus at the Swiss Federal Institute of Technology in Lausanne. He has over three decades of research and teaching experience from various corporate and academic institutions. He was previously a Director at Siemens Building Technologies where he was responsible for R&D, product innovation and patents. Dr. Ryser has a Ph.D. in applied Physics from the University of Geneva, a Masters degree in Experimental Physics and an MBA.
Daniele MariDaniele Mari was born in Milan in 1961, After a scientific high school degree obatained in Italy Daniele Mari joins EPFL in 1980 and graduates in Physics in 1986. In 1991, he obtains the Ph.D. from the same institution working in the field of metal-ceramic composites. From 1992 to 1993 he continues his research as a post-doc at the Massachusetts Institute of Technology with a work on shape-memory alloys. In 1993, he joins the company Amysa Yverdon SA (Switzerland) as director of Research and Development and creates ACME (Advanced Composite & Microwave Engineering) with activities in the fields of the electromagnetic heating and materials science. In parallel with his industrial activities, D. Mari has supervised different research projects in materials science at the EPFL. In 2004 he joins the Laboratoire de Physique de la Matière Complexe to develop mechanical spectroscopy in the field of hard materials and steels. He is appointed MER in 2012. Since then he is responsible for the Physics Laboratories (for student training) and Auditoriums. Since 2013 D. Mari is the Deputy Director of the Physics School.
Rémy GlardonNé en 1950, originaire de Vallorbe (VD). Il étudie à l'EPFL où il obtient un diplôme d'ingénieur en 1973 et le titre de docteur es sciences techniques en 1977. Il rejoint en janvier 1979 l'University of California à Berkeley où il entreprend des travaux dans le domaine de l'usure et de la mécanique de rupture. A partir de 1982 il occupe différents postes dans le management, d'abord dans l'assurance de qualité, puis dans la production et la logistique au sein de la société Mettler-Toledo à Greifensee, ZH.
Il rejoint, en 1990, l'entreprise Amysa à Yverdon où il occupe le poste de directeur technique.
En 1993, il est nommé directeur des opérations et membre du comité de direction du groupe Portescap à La Chaux-de-Fonds. Il y dirige toutes les unités opérationnelles de l'entreprise et, en tant que tel, entreprend une réorganisation visant à améliorer les performances de la logistique et de l'outil de production de manière à mieux répondre aux besoins du marché.
Depuis 1995 il est professeur extraordinaire de gestion et processus de production au Département de génie mécanique. Ses travaux de recherche portent en particulier sur la modélisation et la simulation de la production et de la logistique interne, sur le développement des techniques de Rapid Manufacturing et Rapid Tooling, ainsi que sur l'intégration de procédés d'usinage non-traditionnels (EDM, ECM).
Manuel Alexandre PouchonResearcher in experimental and theoretical materials science, specializing in the development of nuclear fuels since 1997, and structural materials for nuclear reactors since 2004. Presently leading nuclear materials lab (LNM) and the advanced nuclear materials (ANM) group and programme at the Paul Scherrer Institute (PSI) in Switzerland. The applicability of different material candidates in advanced nuclear reactors is researched. Especially different aspects of radiation damage are investigated. For this purpose the concept of sample miniaturization is applied and further developed. Recently leading a new activity in particle fuel production and application. Previously working for the FUJI project at PSI, where different nuclear fuel forms for fast reactors were produced, characterized and finally irradiated in reactor. This work was performed in collaboration with the Japan Nuclear Cycle Development Institute (JNC) and Nuclear Research & consultancy Group (NRG) in the Netherlands. Previously an International Fellow at JNC investigating the thermal conductivity, sintering behaviour, and mechanical interaction of ceramic-sphere fuel beds; this includes the use of finite element methods for simulating various behaviours. Previously at the Paul Scherrer Institute (PSI) and for the Inert Matrix Fuel Project for burning plutonium in light water reactors, investigating the thermal conductivity and the diffusion and solubility of fission products of a zirconia-based non-fertile matrix.