微观结构
合金
材料科学
热稳定性
冶金
化学工程
工程类
作者
Naďa Beronská,Andrej Opálek,Štefan Nagy,Tomáš Dvořák,Tomáš Švantner,P. Švec,Pavol Štefánik,Karol Iždinský
出处
期刊:Kovové materiály
[AEPress, s.r.o.]
日期:2019-03-25
卷期号:57 (02): 95-103
被引量:2
摘要
Cu/ZrB2 and CuCr1Zr/ZrB2 composites were prepared by gas pressure infiltration technology.The ZrB2 powder was used as reinforcement.No interfacial reaction took place for Cu, or CuCr1Zr matrix as confirmed by transmission electron microscopy (TEM).The thermal stability of composites was very good, i.e. without any indication of possible disintegration.Composites exhibit high structural stability when subjected to 5 consecutive heating/cooling cycles to 800 • C. Maximums of relative elongations recorded for particular heating/cooling cycles slightly increased for Cu/ZrB2 composite and slightly decreased for CuCr1Zr/ZrB2 composite.However, the differences are negligible.K e y w o r d s: Cu-ZrB2
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