电解充氢后时效对合金组织的影响(ТiСr1.8) 100-xVx

N. A. Medvedeva, A. Mironova, N. Skryabina, M. Plotnikova, D. Fruchart, M. G. Shcherban
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引用次数: 0

摘要

长期以来,人们一直在研究Ti-Cr-V三元合金在引入氢后的显微组织变化。评价了钒浓度和钛钒比对组成稳定性的影响。所研究的合金体系对应于关系(TiCr1.8) 100-xVx。Ti/Cr的原子比是恒定的。钒的含量随着步骤20的变化而变化。%。在恒温三电极电化学电池中,使用1M KOH电解质(ic = 10-30 mA/cm2)在293 K下进行了3小时的充氢。结果表明,氢的引入导致了合金组分的表面迁移。它们的分布随着时间的推移而波动。这是因为氢与钛和钒的相互作用不同。电解氢的引入引起了合金晶格的变形和合金原子的自扩散。电解氢在统计上的不均匀分布增加了过程的强度。内应力的松弛导致构件的进一步重新分布。所观察到的变化取决于合金中钒的含量,并且在晶内和晶界附近具有不同的特征。(TiCr1.8)60V40的重大变化已经确定。
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The effect of aging on the microstructure of alloys (ТiСr1.8)100–xVx after electrolytic hydrogen charging
The microstructure transformation of ternary Ti-Cr-V alloys after introduction of hydrogen has been analyzed for a long time. Assessment of the impact of vanadium concentration and ratio Ti and V concentrations on composition stability has been carried out. Investigated alloys system corresponds to relation (TiCr1.8)100–xVx.The atomic ratio Ti/Cr is constant. Vanadium content changes with the step 20 at. %. The hydrogen charging has been carried out in a thermostatic three-electrode electrochemical cell using 1M KOH electrolyte (ic = 10–30 mA/cm2) at 293 K during three hours. It was established that the hydrogen introduction leads to surface migration of alloy components. Their distribution oscillates as time passed. This is due to the fact that hydrogen interacts differently with titanium and vanadium. The electrolytic hydrogen introduction initiates deformation of the crystal lattice and self-diffusion of alloy atoms. The statistically nonuniform distribution of electrolytic hydrogen increases the intensity of the process. The relaxation of internal stresses leads to a further redistribution of components. The observed changes depend on the vanadium content in the alloys and have a different character inside the grain and near grain boundaries. The significant changing has been established for (TiCr1.8)60V40.
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