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STUDY ON MECHANICAL PROPERTY OF POROUS TITANIUM BY ADDING POWDER CARBON

机译:粉末炭填充多孔钛的力学性能研究。

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Titanium alloys have a wide variety of applications in the aerospace, automotive and biomedical industries. Furthermore, titanium carbide (TiC) has been used for reinforcement of titanium alloy matrices due to its compatibility. In this paper, under the experimental condition of 0.1 Pa, the sintering temperature of 1250°C and sintering time of 2h, the porous titanium is fabricated by powder metallurgy blend element method. The conclusions manifest that porosity has a decreasing trend with increasing the addition of carbon; however, apparent increase of porosity appears when the addition of carbon increases to 2.5 wt%. The TiC is generated in the matrix manifested from the detection results of XRD. When the carbon content achieves 1.5 wt% and 2.0wt%, the initial yield strength reaches the highest with 339.8±15MPa and 331.1 ± 10MPa separately. When the content of carbon powder achieves 2.5 wt%, the initial yield strength decreases to 195.1± 15MPa.
机译:钛合金在航空航天,汽车和生物医学行业中具有广泛的应用。此外,碳化钛(TiC)由于具有相容性而被用于增强钛合金基体。本文在0.1 Pa的实验条件下,烧结温度为1250℃,烧结时间为2h,采用粉末冶金混合元素法制备了多孔钛。结论表明,随着碳含量的增加,孔隙度呈下降趋势。然而,当碳的添加量增加到2.5wt%时,出现明显的孔隙率增加。从XRD的检测结果可以看出,在基质中生成了TiC。当碳含量达到1.5wt%和2.0wt%时,初始屈服强度分别达到最高的339.8±15MPa和331.1±10MPa。当碳粉的含量达到2.5重量%时,初始屈服强度降低至195.1±15MPa。

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