Artigo De: cienciavitae, scopus

Carbide phases synthesised from C/Mo powder compacts at specified sub-stoichiometric ratios by solar radiation heating to temperatures between 1600°C and 2500°C

Materials Transactions

Bernard Granier; Nobumitsu Shohoji; Luis G. Rosa2009

Informações chave

Autores:

Bernard Granier; Nobumitsu Shohoji; Fernando Costa (Fernando Costa Oliveira); Teresa Magalhães; Jorge Cruz Fernandes (José Jorge Lopes da Cruz Fernandes); Luis G. Rosa (Luís Manuel Guerra da Silva Rosa)

Publicado em

December 1, 2009

Resumo

There are a number of distinguishable carbide phases in the binary Mo-C system depending on C/Mo ratio as well as on temperature. In a preceding work published in this journal, carbide formation performance for graphite/molybdenum powder mixtures at specified levels of sub-stoichiometric C/Mo atom ratio (C/Mo = 1/1, 3/4, 2/3 and 1/2) by exposure to concentrated solar radiation in a solar furnace at PROMES-CNRS in Odeillo (France) was reported at a target temperature 1900°C. In the present work, the similar carbide synthesis experiments were carried out at 1600°C as well as at temperature exceeding 2500°C. The target temperature setting was adjusted by controlling the downward deviation of the test piece top surface position from the exact focal spot of the parabolic mirror concentrator located above. In this solar furnace at PROMES-CNRS, temperature of the test piece was raised from ambient temperature to the target temperature within fractions of a second. Reaction products detected were hexagonal η-MoC1−x and β-Mo2C (high temperature sub-carbide phase) depending on the C/Mo ratio in the starting material as well as on the processing temperature. No evidence of formation of cubic α-MoC1−x was detected by X-ray diffraction analysis for any test piece examined.

Detalhes da publicação

Versão da publicação

AO - Versão original do autor

Título do contentor da publicação

Materials Transactions

Primeira página ou número de artigo

2813

Última página

2819

Volume

50

Fascículo

12

WoS (Web of Science)

WOS:000274083800020

Domínio Científico (FOS)

materials-engineering - Engenharia dos Materiais

Idioma da publicação (código ISO)

eng - Inglês

Identificador alternativo (URI)

http://www.scopus.com/inward/record.url?eid=2-s2.0-74549155781&partnerID=MN8TOARS

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