材料科学
络腮胡子
复合数
原位
延展性(地球科学)
复合材料
合金
极限抗拉强度
胡须
选择性激光熔化
微观结构
物理
蠕动
气象学
作者
Sasan Dadbakhsh,Raya Mertens,Kim Vanmeensel,Gang Ji,Jean‐Pierre Kruth
标识
DOI:10.1038/s41598-020-67434-3
摘要
Abstract This work demonstrates a successful in situ method capable of producing an ultra-strong novel Ti composite without aluminium and vanadium. In this method, selective laser melting is used to conduct in situ alloying and reinforcing of a Ti/10.5 wt% Mo 2 C powder mixture. It is shown that this leads to a metastable β-Ti matrix homogeneously reinforced by high aspect ratio, 50–200 nm wide and up to several micrometre long TiC whiskers. The transformations of the phases are controlled by decomposition, dissolution, diffusion, and reformation of constituents. The whisker morphology of in situ formed TiC particles is associated with directional crystal growth along the TiC <110> direction. The developed TiC reinforced β-Ti alloy combines a hardness over 500 HV, a Young’s modulus of 126 GPa, and an ultimate compressive strength of 1642 MPa. Improving the ductility of this composite is the subject of another work.
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