Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)
Le MSMP fédère le Laboratoire de Mécanique et Procédés de Fabrication (LMPF) du centre de Châlons-en-Champagne, le laboratoire MécaSurf du centre d'Aix-en-Provence et une équipe du département Mécanique, Matériaux, Procédés du centre de Lille.
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Voir le site du laboratoire MSMP :
http://www.msmp.eu/index.php
Recent Submissions
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(SAGE Publications, 2021-01-28)During tube hydroforming process, the friction conditions between the tube and the die have a great importance on the material plastic flow and the distribution of residual stresses of the final component. Indeed, a ...
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(Springer Science and Business Media LLC, 2021-03-04)The stainless clad steel materials (particularly A283-Gr-C hot-rolled to austenitic stainless steel plate SA240 TP 316L) have become widely used in the fabrication of heat exchangers, pressure vessels, and other components ...
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(Springer Science and Business Media LLC, 2021-03-24)This paper reports an intelligent approach for modeling and optimisation of filling system design (FSD) in the case of sand casting process of aluminium alloy. In order to achieve this purpose, physics-based process modeling ...
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(Presses des Mines, 2021-04)Le Géocorail est un nouveau matériau créé dans le milieu marin à partir de l’emprisonnement de sédiments naturels dans un dépôt calco-magnésien dont la croissance est activée par pilotage électrolytique. Pour savoir si un ...
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(Institute of Electrical and Electronics Engineers (IEEE), 2021)In this paper, an experimental procedure is presented in order to handle magnetic measurements under uniaxial tensile stress reaching the plastic domain. The main advantage of the proposed procedure is that it does not ...
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(IEEE, 2017)The manufacturing of a slinky stator core is the result of a sequence of difference processes: straightening, punching, rolling….. It has been shown in the literature that manufacturing processes lead to a degradation of ...
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(Springer Science and Business Media LLC, 2020)In this this work, superelastic NiTi and Ni-free Ti-23Hf-3Mo-4Sn biomedical alloys were investigated by tensile tests in relationship with their microstructures. To follow the stress-induced martensitic transformations ...