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ELECTRO-CONDUCTIVE B4C-TiB2 COMPOSITE CERAMIC AND PREPARATION METHOD THEREOF
An electro-conductive B4C—TiB2 has a microstructure in which large B4C grains are coated by small TiB2 grains. The composite ceramic includes 10˜30% by volume of TiB2. A method for preparing the electro-conductive B4C—TiB2 composite ceramic includes: (1) weighing B4C, TiC, and amorphous B powder; (2) mixing evenly and drying thoroughly the powders; and (3) loading the mixed powder into a graphite mold; and placing the graphite mold in a spark plasma sintering furnace for sintering under vacuum, where the sintering is performed at 2000° C. and 50 MPa for 5˜20 min.
ELECTRO-CONDUCTIVE B4C-TiB2 COMPOSITE CERAMIC AND PREPARATION METHOD THEREOF
An electro-conductive B4C—TiB2 has a microstructure in which large B4C grains are coated by small TiB2 grains. The composite ceramic includes 10˜30% by volume of TiB2. A method for preparing the electro-conductive B4C—TiB2 composite ceramic includes: (1) weighing B4C, TiC, and amorphous B powder; (2) mixing evenly and drying thoroughly the powders; and (3) loading the mixed powder into a graphite mold; and placing the graphite mold in a spark plasma sintering furnace for sintering under vacuum, where the sintering is performed at 2000° C. and 50 MPa for 5˜20 min.
ELECTRO-CONDUCTIVE B4C-TiB2 COMPOSITE CERAMIC AND PREPARATION METHOD THEREOF
RAN SONGLIN (Autor:in) / ZHAO JUN (Autor:in) / JIN XING (Autor:in) / WANG DONG (Autor:in) / DING XIANG (Autor:in)
31.08.2023
Patent
Elektronische Ressource
Englisch
IPC:
C04B
Kalk
,
LIME
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