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- W4318250399 abstract "Particle reinforced nickel matrix composites (PRNMCs) possess superior properties than the monotonic nickel superalloys, showing great potentials for industrial applications such as hot end components in gas turbine and aircraft engine like turbine blades, guide vanes, turbine disks, and combustion chambers. The interfacial compatibility of reinforcement and matrix might cause interfacial microcracks and micropores in the composites, and the uniform distribution of reinforcements in the matrix is technically challenging, which eventually cause immature failure of PRNMCs. It is necessary to investigate the interfacial structure between them and the distribution of reinforcements in the matrix to obtain high-performance PRNMCs. In this chapter, the interface characteristics, microstructural evolution, and mechanical properties of laser powder bed fusion (LPBF) processed WC/Inconel 718 composites were investigated by tailoring the laser processing parameters and reinforcement characteristics. A graded interfacial layer with a composition of (W, M)C3 (MNi, Cr, Fe) was formed between the reinforcing particles and the matrix during the LPBF process. The formation mechanism of this interfacial layer was revealed. The fine columnar dendrites and sound metallurgical bonding at interfaces with negligible distortion and microcracks were obtained. The graded interfacial layer was beneficial to improve the mechanical properties, yielding high wear and tensile properties of LPBF-processed WC/Inconel 718 composites." @default.
- W4318250399 created "2023-01-27" @default.
- W4318250399 creator A5003736214 @default.
- W4318250399 creator A5066804278 @default.
- W4318250399 date "2023-01-01" @default.
- W4318250399 modified "2023-09-28" @default.
- W4318250399 title "Ceramic particle reinforced Ni-based composites with graded reinforcement/matrix interface by laser additive manufacturing" @default.
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- W4318250399 doi "https://doi.org/10.1016/b978-0-12-823783-0.00011-5" @default.
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