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pro vyhledávání: '"Jakob D. Hamilton"'
Autor:
Anis Assad, Benjamin D. Bevans, Willem Potter, Prahalada Rao, Denis Cormier, Fernando Deschamps, Jakob D. Hamilton, Iris V. Rivero
Publikováno v:
Materials & Design, Vol 245, Iss , Pp 113281- (2024)
This work concerns the laser wire directed energy deposition (LW-DED) additive manufacturing process. The objectives were two-fold: (1) process mapping – demarcating the process states as a function of the processing parameters; and (2) process mon
Externí odkaz:
https://doaj.org/article/701bdd1217524454afaa45a292d2f424
Publikováno v:
Journal of Manufacturing Processes. 85:1197-1207
Autor:
Jakob D. Hamilton, Samantha Sorondo, Andrew Greeley, Xiao Zhang, Denis Cormier, Beiwen Li, Hantang Qin, Iris V. Rivero
Publikováno v:
Journal of Manufacturing Processes. 81:27-34
Autor:
Eric Weflen, Jakob D. Hamilton, Samantha Sorondo, Ola L. A. Harrysson, Matthew C. Frank, Iris V. Rivero
Publikováno v:
IISE Transactions. 55:711-722
Autor:
Li-Hsin Yeh, Qing Li, Xuepeng Jiang, Weijun Shen, Iris V. Rivero, Vignesh Suresh, Zhan Zhang, Jakob D. Hamilton, Xiao Zhang, Beiwen Li, Hantang Qin
Publikováno v:
Procedia Manufacturing. 53:64-71
The Direct Energy Deposition (DED) process utilizes laser energy to melt metal powders and deposit them on the substrate layer to manufacture complex metal parts. This study was applied as a remanufacturing and repair process to fix used parts, which
Publikováno v:
Journal of Composite Materials. 55:641-651
Cryogenic mechanical alloying (cryomilling) was employed to fabricate aluminum matrix composite powder feedstock for additive manufacturing. The high energy milling of the powder system induces a homogenous distribution of reinforcement particles in
Autor:
Jakob D. Hamilton, Andrew Greeley, Samantha Sorondo, Iris V. Rivero, Patricia Cyr, Bruce E. Kahn, Denis Cormier
Publikováno v:
Heat Treat 2019: Proceedings from the 30th Heat Treating Society Conference and Exposition.
In-envelope hybrid manufacturing systems comprised of directed energy deposition (DED) and machining provide flexibility for the fabrication of complex geometries with minimal setup changes. However, for these manufacturing set ups, the effects of de