Yabo
JIA
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Bâtiment CISIT
Bureau 10
Revue internationale avec comité de lecture
Jia Y., Jegou L., Feulvarch E., Saadlaoui Y., Kaftandjian V., Elguedj T., Dubar L., Bergheau J.-M. (2024). An improved Arbitrary LagrangianEulerian thermal-fluid model by considering powder deposition effects on melting pool during Direct Energy Deposition processes. Additive Manufacturing, pp. 104570 [DOI=https://doi.org/10.1016/j.addma.2024.104570].
Jia Y., Leblond J.-B., Roux J.-C., Bergheau J.-M. (2024). A nodal‑integration‑based finite element method forsolving steady‑state nonlinear problems intheloading's comoving frame. Vol.:(0123456789)Engineering with Computers [DOI=https://doi.org/10.1007/s00366-024-02046-3].
Jia Y., Saadlaoui Y., Feulvarch E., Bergheau J.-M. (2024). An efficient local moving thermal-fluid framework for accelerating heat and mass transfer simulation during welding and additive manufacturing processes. Computer Methods in Applied Mechanics and Engineering, 419, pp. 116673. [IF=7.2] [DOI=https://doi.org/10.1016/j.cma.2023.116673].
Jia Y., Naceur H., Saadlaoui Y., Dubar L., Bergheau J.-M. (2024). A comprehensive comparison of modeling strategies and simulation techniques applied in powder-based metallic additive manufacturing processes. Journal of Manufacturing Processes, 110, pp. 1-29. [IF=6.2] [DOI=https://doi.org/10.1016/j.jmapro.2023.12.048].
Jia Y., Saadlaoui Y., Roux J.-C., Bergheau J.-M. (2022). Steady-state thermal model based on new dedicated boundary conditions application in the simulation of laser powder bed fusion process. Applied Mathematical Modelling, 112, pp. 749-766 [DOI=https://doi.org/10.1016/j.apm.2022.08.013].
Jia Y., Saadlaoui Y., Hamdi H., Sijobert J., Roux J.-C., Bergheau J.-M. (2022). An experimental and numerical case study of thermal and mechanical consequences induced by laser welding process. Case Studies in Thermal Engineering, 35, pp. 102078 [DOI=https://doi.org/10.1016/j.csite.2022.102078].
Jia Y., Leblond J.-B., Bergheau J.-M. (2022). Exact satisfaction of boundary and interface conditions in nodal-integration-based finite element methods. Comptes Rendus. Mécanique, 350, pp. 57-83 [DOI=https://doi.org/10.5802/crmeca.103].
Jia Y., Saadlaoui Y., Bergheau J.-M. (2021). A Temperature-Dependent Heat Source for Simulating Deep Penetration in Selective Laser Melting Process. applied sciences, 11(23), pp. 11406 [DOI=https://doi.org/10.3390/app112311406].
Jia Y., Bergheau J.-M., Leblond J.-B., Roux J.-C., Bouchaoui R., Gallée S., Brosse A. (2020). A New Nodal-Integration-Based Finite Element Method for the Numerical Simulation of Welding Processes. metals, 10(10), pp. 1386 [DOI=https://doi.org/10.3390/met10101386].
Conférence internationale avec actes et comité de lecture
Jia Y., Saadlaoui Y., Bergheau J.-M. (2022). Un modèle adaptatif de source de chaleur pour simuler le procédé de la fusion sélective par laser en cas de pénétration profonde. 15ème colloque national en calcul des structures, Hyères-les-Palmiers, France, mai .
Conférence nationale avec actes et comité de lecture
Jia Y., Feulvarch E., Boungomba H., Dubar L., Naceur H., Bergheau J.-M. (2024). Simulation l'apport du matière durant le procédé WLAM par la méthode Lagrangienne Eulerienne Arbitraire. CSMA 2024, Presqu'ile de Giens, mai .