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Effects of hydrogen on microstructure and hot deformability of directionally solidified Ti-44Al-6Nb-1Cr alloy

机译:氢对定向凝固Ti-44Al-6NB-1CR合金微观结构和热可变形性的影响

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Effect of hydrogen on microstructure and the hot flow behavior of the directionally solidified Ti-44Al-6Nb-lCr (at.%) alloy was studied. Ti-44Al-6Nb-lCr alloys were prepared by vacuum induction melting (as-cast alloy) and cold crucible directional solidification (CCDS). Effects of hydrogen on the hot deformation behavior were tested on Gleeble-1500D at 1373 K and 1473 K under strain rate of 0.01 s~(-1). Results show that the volume fraction of B2 phase is increased after CCDS due to the solute distribution. The residual B2 phase in the hydrogenated alloy is more than that in unhydrogenated alloy because hydrogen is beta stabilizing element and stabilizes the B2 phase. The peak stress of the CCDS alloy is higher than that of as-cast alloy at the same deformation condition due to the directional solidified microstructure. Hydrogen can decrease peak stress of the as-cast alloy and CCDS alloy significantly, which is decreased by about 46% and 43% respectively. This is attributed to the hydrogen-promoted dynamic recrystallization and hydrogen-increased the volume fraction of B2 phase.
机译:氢对微观结构的影响及定向凝固的Ti-44Al-6n-6NB-LCR(attm.1%)合金的热流动性能。通过真空诱导熔融(铸造合金)和冷坩埚定向凝固(CCD)制备Ti-44Al-6NB-LCR合金。在0.01s〜(-1)的应变速率下,在1373k和1473k下在GLEEBLE-1500D上测试氢对热变形行为的影响。结果表明,由于溶质分布,CCD后B2相的体积分数增加。氢化合金中的残留B2相比未氢化合金中的残留B2相大于,因为氢是β稳定元素并稳定B2相。由于定向固化的微观结构,CCD合金的峰值应力高于相同变形条件下的铸造合金的峰值应力。氢可显着降低铸造合金和CCD合金的峰值应力,其分别下降约46%和43%。这归因于氢促进的动态再结晶和氢气增加B2相体积分数。

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