Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7968204 | Journal of Nuclear Materials | 2014 | 4 Pages |
Abstract
W-Cu functionally graded material (FGM, 75 wt% W + 25 wt% Cu-40 wt% W + 60 wt% Cu) has been prepared by a method of high-gravity combustion synthesis and melt-infiltration in a short time (â¼5 min). The infiltration mechanism in the high-gravity field was investigated. The W-Cu FGM showed an overall relative density of â¼97% and gradually-varying properties in terms of density, micro hardness, coefficient of thermal expansion. Especially, the W-Cu FGM exhibited a coefficient of thermal expansion between those of W and Cu, and thus could be used as a transition layer between W and Cu to relax the thermal stresses.
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Authors
P. Zhao, S.B. Guo, G.H. Liu, Y.X. Chen, J.T. Li,