Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Shay Harrison"'
Publikováno v:
Journal of Nuclear Materials. 543:152577
Additive manufacturing (AM) is a rapidly evolving technology being considered for nuclear applications. A special focus on AM to fabricate nuclear-grade silicon carbide (SiC) is explored in this paper. First, we present currently available AM process
Publikováno v:
Journal of the American Ceramic Society. 82:3221-3224
The microstructure of silicon carbide fabricated from the gas-phase-based, laser-driven selective area laser deposition (SALD) process has been characterized by X-ray diffraction and solid-state 29Si NMR techniques with magic angle spinning (MAS). X-
Autor:
James E. Crocker, Shay Harrison, Harris L. Marcus, Leon L. Shaw, Lianchao Sun, Kevin J. Jakubenas
Publikováno v:
Materials and Manufacturing Processes. 13:909-919
Fabrication of a SiC/C thermocouple embedded in an arbitrarily-shaped SiC macro-component has been demonstrated using an integrated Selective Area Laser Deposition (SALD) with the closely related Selective Area Laser Deposition Vapor Infiltration (SA
Autor:
Leon L. Shaw, James E. Crocker, Harris L. Marcus, Shay Harrison, Kevin J. Jakubenas, Lianchao Sun
Publikováno v:
Materials and Manufacturing Processes. 13:859-882
To fabricate macro-structural SiC components containing an In Situ SiC/C thermocouple using an integrated SALD and SALDVI technique, thermodynamic analyses on the involved reactant gases have been performed with the CET89 code based on the minimizati
Autor:
James E. Crocker, Shay Harrison, Kevin J. Jakubenas, Lianchao Sun, Leon L. Shaw, Harris L. Marcus
Publikováno v:
Materials and Manufacturing Processes. 13:883-907
In order to fabricate well-control led in situ SiC/C thermocouples embedded within macro-structural SiC components using an integrated selective area laser deposition (SALD) and the selective area laser deposition and vapor Infiltration (SALDVI) tech
Publikováno v:
JOM. 50:21-23
Selective-area laser deposition and selective-area laser-deposition vapor infiltration are two gas-phase solid-freeform techniques capable of the direct fabrication of arbitrary structures. The wide range of available gas precursors allows unique com
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