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dc.contributor.authorBandyopadhyay, Debashis-
dc.date.accessioned2024-02-09T09:47:04Z-
dc.date.available2024-02-09T09:47:04Z-
dc.date.issued2000-
dc.identifier.urihttps://link.springer.com/article/10.1007/s11669-000-0022-6-
dc.identifier.urihttp://dspace.bits-pilani.ac.in:8080/jspui/xmlui/handle/123456789/14161-
dc.description.abstractThe assessed phase diagram of the Ti-C system shown in[1990Oka] conducted a detailed assessment of the C-Hf Fig. 1 is taken from [1998Oka].[1995Alb],[1996Jon], and system, where only one intermediate phase exists. The [1996Sei] reported other assessments of this system, which assessed phase diagram shown in Fig. 3 is taken from consists of two terminal solids α-Ti and β-Ti and a refractory[1990Oka]. Three terminal solids, C (graphite), α-Hf, and monocarbide TiC. The other phases present are liquid and β-Hf, are present in this system.[Massalski1] has reported graphite (C). Two eutectic and one peritectoid reaction appear the temperature of β-Hf⇔ α-Hf allotropic transformation as in this system at 1646, 2776, and 920 C, respectively. There 1743 C. There are several conflicting reports in the literature seems to be a tendency of carbon ordering at compositions([1954Cot],[1961Por],[1962Kat], and [1965Rud]) regarding below stoichiometry; as a result, the Ti2C phase does not the eutectic reaction temperature between C and Hf and its appear in the binary phase diagram. The crystal structure corresponding composition. The crystal structure data of the data shown Table 1 are taken from [Massalski2]. C-Hf system shown in Table 3 are taken from [1990Oka].en_US
dc.language.isoenen_US
dc.publisherJOURNAL OF PHASE EQUILIBRIAen_US
dc.subjectPhysicsen_US
dc.subjectC-Hf-Ti systemen_US
dc.subjectCarbonen_US
dc.subjectHafniumen_US
dc.subjectTitanium (Ti)en_US
dc.titleThe C-Hf-Ti System (Carbon-Hafnium-Titanium)en_US
dc.typeArticleen_US
Appears in Collections:Department of Physics

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