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首页> 外文期刊>Journal of Materials Research and Technology >Effect of melt hydrogenation on microstructure evolution and tensile properties of (TiB?+?TiC)/Ti-6Al-4V composites
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Effect of melt hydrogenation on microstructure evolution and tensile properties of (TiB?+?TiC)/Ti-6Al-4V composites

机译:熔融氢化对(TiBα+→TiC)/ Ti-6Al-4V复合材料的微观结构演化和拉伸性能的影响

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摘要

In order to fabricate in-situ synthetic (TiB?+?TiC)/Ti-6Al-4V composites, we conducted arc-smelting in the atmosphere of hydrogen and argon gaseous mixture using a melting casting method of melt hydrogenation technology. Some experimental parameters such as arc current, voltage, gas partial pressure and smelting time were precisely controlled. The molar ratio of the ceramic phase is 1:1 at a total integral of 5%. The microstructure evolution, tensile properties and fracture mechanism of the composite at room temperature are revealed and discussed.The results of the tensile test demonstrate that melt hydrogenation technology remarkably improves the ultimate strength of (TiB?+?TiC)/Ti-6Al-4V composites accompanied by slight increase of elongation, in which the 5?vol% (TiB?+?TiC)/Ti-6Al-4V increased by 15.19% from 901.42?MPa to 1038.42?MPa with elongation increasing from 0.47% to 0.78%, compared with that of the unhydrogenated composites. The improvement in the strength of the composite can be attributed to the refinement in matrix α layer and the increasement of the aspect ratio of TiB whiskers. The use of melt hydrogenation technology is found to change the trend of segregation of ceramic phase to primary β phase at grain boundaries into random dispersion distribution.
机译:为了制造原位合成(TiBα+ΔTIC)/ TI-6AL-4V复合材料,我们使用熔融氢化技术的熔化浇铸方法在氢气和氩气混合物的气氛中进行弧熔化。精确控制了一些实验参数,例如电弧电流,电压,气体分压和熔炼时间。陶瓷相的摩尔比为1:1,总积分为5%。揭示和讨论了复合材料在室温下的微观结构演化,拉伸性能和断裂机制。拉伸试验结果表明熔融氢化技术显着提高了(TIB?+→TIC)/ TI-6AL-4V的最终强度复合材料伴随着伸长率的略微增加,其中5?VOL%(TIB?+ΔTIC)/ TI-6AL-4V从901.42℃增加15.19%?MPA至1038.42α,其伸长率从0.47%增加到0.78%,与未氢化的复合材料相比。复合材料强度的改善可以归因于基质α层的细化和TIB晶须的纵横比的升高。发现熔融氢化技术的使用改变了晶粒边界陶瓷相的偏析到初级β相的趋势。

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