Effect Of B4cp Content On Microstructure And The High-Temperature Oxidation Behavior Of Ti-5.4al-4.03mo-3.93v-2.37cr-0.01zr Composites

MATERIALS RESEARCH EXPRESS(2020)

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摘要
The paper discusses the effects of B4C particle (B4Cp) content on the microstructure and high-temperature oxidation resistance of B4Cp/Ti-5.4Al-4.03Mo-3.93V-2.37Cr-0.01Zr composite prepared by powder metallurgy. The results demonstrate that grain size of the composites decreases by increasing reinforcement content from 1 to 3 wt.%, suggesting that B4Cp can refine grain of the materials. For the composites with increasing B4Cp content from 0 to 3 wt.%, the apparent porosity increase from 3.23 to 6.89%, indicating that the density of materials decreased with the increase of B4CP content. In addition, the hardness of the materials have been greatly improved. Comparing to the substrate 434.02 HV, the 1, 2, and 3 wt.% B4CP specimens are increased by 37.2%, 57.5%, and 84.7%, respectively. The weight of the oxidation product is reduced and the oxidation rate is slowed down, as the B4CP content increases. Moreover, the thickness of the oxide layer is greatly reduced, and the thickness of oxidation layer in composites with 0, 1, 2 and 3 wt.% B4CP specimens were 60, 55, 47 and 40 mu m, indicating that B4CP can improve the high-temperature oxidation resistance.
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关键词
Titanium matrix composites, B4Cp, Microstructure, High-temperature oxidation behavior, Powder metallurgy
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