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- W2897577639 abstract "In this paper, the effect of powder composition on TiC morphology and clad hardness using in-situ laser cladding process has been studied. Two atomic ratios, 45% and 55%, were selected for C:Ti, the first one of which has the potential to form TiC without formation of the preliminary Ti (α) phase. Fe percentages were 70. Results show that chemical composition affects the TiC morphology, TiC distribution and hardness profile in the clad. By increasing the C:Ti ratio from 45 at% to 55 at%, it is shown that the volume fraction of the formed TiC increases. A higher volume fraction of TiC in the clad results in higher values of reinforcements in the clad, thus increasing the clad hardness. SEM and EDS analyses have been used to characterize the phases in the clad.In this paper, the effect of powder composition on TiC morphology and clad hardness using in-situ laser cladding process has been studied. Two atomic ratios, 45% and 55%, were selected for C:Ti, the first one of which has the potential to form TiC without formation of the preliminary Ti (α) phase. Fe percentages were 70. Results show that chemical composition affects the TiC morphology, TiC distribution and hardness profile in the clad. By increasing the C:Ti ratio from 45 at% to 55 at%, it is shown that the volume fraction of the formed TiC increases. A higher volume fraction of TiC in the clad results in higher values of reinforcements in the clad, thus increasing the clad hardness. SEM and EDS analyses have been used to characterize the phases in the clad." @default.
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- W2897577639 date "2011-01-01" @default.
- W2897577639 modified "2023-09-26" @default.
- W2897577639 title "Effect of C:Ti atomic ratio on TiC morphology deposited by laser cladding process" @default.
- W2897577639 doi "https://doi.org/10.2351/1.5062310" @default.
- W2897577639 hasPublicationYear "2011" @default.
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