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A novel fabrication route to microlaminated TiB2-NiAl composite sheet with {111} texture by roll bon
ISSN号:0966-9795
期刊名称:Intermetallics
时间:2013.6.6
页码:46-51
相关项目:非连续增强TiAl基复合材料板材的设计与合成理论基础研究
作者:
Wang, Q. W.|Fan, G. H.|Geng, L.|Zhang, J.|Cui, X. P.|Pang, J. C.|Qin, S. H.|Du, Y.|
同期刊论文项目
非连续增强TiAl基复合材料板材的设计与合成理论基础研究
期刊论文 15
专利 7
同项目期刊论文
Fabrication of fully dense TiAl-based composite sheets with a novel microlaminated microstructure
Influence of raw material selection and fabrication parameters on microstructure and properties of m
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A novel approach to accelerate the reaction between Ti and Al
Wide stacking fault of aluminum for multilayered TiB2/Al-Ni composite by roll bonding process.
Fabrication of fully dense TiAl-based composite sheets with a novel microlaminated microstructure.
Growth kinetics of TiAl 3 layer in multi-laminated Ti-(TiB 2/Al) composite sheets during annealing t
Formation of intermetallics compound layer in multi-laminated Ni-(TiB2/Al) composite sheets during a
Formation of intermetallic compound layer in multi-laminated Ni-(TiB2/Al) composite sheets during an
Effect of solid solution of Si on mechanical properties of TiAl3 based on the multi-laminated Ti-(Si
SiC_p/Al-Ti多层复合板材在轧制与反应退火过程的组织演化(英文)
压力浸渗制备具有优异变形能力的Ti-Al复合体(英文)
固液反应法制备增强体层状分布的TiAl基复合材料板
Fabrication of Ti-Al complex with superior deformation capability by pressure infiltration