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Effects of hydrogen as a solid solution element on the deformation behavior of a near-alpha titanium alloy

机译:氢作为固体溶液元素对近α钛合金变形行为的影响

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摘要

The effects of hydrogen on the room-temperature mechanical properties and the deformation behavior of near-alpha alloy Ti-6Al-3Nb-2Zr-1Mo were systematically investigated. It was found that hydrogen addition increased the strength and plasticity of titanium alloy, while the impact toughness firstly increased for the sample with 65 wppm hydrogen and then decreased at higher hydrogen content. The strength was increased due to the pinning effect and the solid-solution strengthening effect of hydrogen, while the plasticity was improved by the increase of dislocation mobility and the breakage of beta laths. The increase of impact toughness at 65wppm hydrogen resulted from the enhancement of dislocation motion and multiplication, but further increasing hydrogen addition would reduce impact toughness by decreasing the cohesion strength at interfaces and grain boundaries and the breakage of beta laths. In addition, deformation behaviors of titanium alloys with different hydrogen content were discussed. Hydrogen inhibited twinning and enhanced dislocation slip to some extent. Cross-slip was hindered and planar slip was favored due to the decrease of stacking fault energy after hydro-genation. Further, basal slip and pyramidal slip were activated while prismatic slip was suppressed by hydrogen addition.
机译:系统地研究了氢对室温机械性能的影响及近乎α合金Ti-6Al-3N-1MO的变形行为。结果发现,氢添加增加钛合金的强度和可塑性,而冲击韧性首先具有65wppm氢的样品,然后在较高的氢含量下降低。由于循环效应和氢的固溶强化效果,因此通过脱位流动性和β板块破裂的增加提高了强度的强度。 65WPPM氢气的升高导致脱位运动和倍增的增强增加,但进一步增加的氢添加将通过降低界面和晶界的凝聚力和β板条破裂来降低冲击韧性。此外,讨论了钛合金具有不同氢含量的变形行为。氢气在一定程度上抑制了孪生和增强的位错滑。由于水力 - 基因后的堆叠故障能量降低,滑倒被阻碍而且平面滑移。此外,通过氢添加,激活基底滑动和锥形滑移,而棱柱滑动抑制了棱柱滑动。

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