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Cyclic deformation characteristics of the metastable β-type Ti-40Nb alloy

机译:亚稳β型Ti-40NB合金的循环变形特性

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The present study investigates the cyclic deformation behavior of a new metastable beta-type Ti-40Nb alloy (wt%) in two different microstructural conditions. Severe cold rolling followed by recrystallization annealing were performed on cast and homogenized Ti-40Nb rods to obtain a single beta-phase microstructure at room temperature. Additional aging at 573 K was carried out to generate isothermal omega-phase precipitates in the beta-matrix. Fatigue tests at cycles up to 2 x 10(6) and a stress ratio of R = -1 were realized with samples with electrochemically polished surfaces. EBSD analysis was carried out after the fatigue tests. Furthermore, detailed fractographic investigations as well as TEM analysis were executed. Results revealed significant differences in the cyclic deformation behavior and a higher fatigue strength for the aged condition. Reasons for superior fatigue properties of the aged condition are a pronounced precipitation hardening effect of the omega-phase as well as a complete suppression of stress-induced martensite formation and deformation twinning due to a barrier function of the omega-precipitates. In the vicinity of the fatigue crack tip, where the localized plastic zone dominates the damage evolution, precipitation-depleted channels can be observed. Within these omega-depleted channels dislocations have an increased mobility, allowing highly localized plastic deformation. Signs of other deformation features with increasing distance to the fatigue crack are not observed. EBSD analysis of the recrystallized samples with initial single beta-phase showed on the contrary changes in the microstructure caused by the cyclic loading and the high instability of the beta-phase. A dominant development of stress-induced alpha ''-martensite towards a full martensitic microstructure dependent on the applied stress amplitudes and cycles as well as additional isolated {332} 113 twinning were detected.
机译:本研究研究了在两个不同的微观结构条件下进行了新的亚稳β型Ti-40nb合金(wt%)的环状变形行为。在铸造和均化的Ti-40NB棒上进行严重的冷轧,然后在铸造和均化的Ti-40NB棒上进行再结晶退火,以在室温下获得单一β相微观结构。进行573 k的额外老化以在β基质中产生等温ω-相沉淀物。用电化学抛光表面的样品实现了高达2×10(6)的循环的疲劳试验和R = -1的应力比。在疲劳试验后进行EBSD分析。此外,执行了详细的地形调查以及TEM分析。结果揭示了循环变形行为的显着差异和老化条件的疲劳强度。由于ω沉淀物的阻隔功能,老化病症的疲劳性能优异的疲劳性能的原因是ω相的明显沉淀硬化效果以及完全抑制应激诱导的马氏体形成和变形孪晶。在疲劳裂纹尖端附近,在局部塑料区主导损伤进化中,可以观察到沉淀耗尽的通道。在这些欧米茄耗尽的通道内,位错具有增加的迁移率,允许高度局部化的塑性变形。未观察到其他变形特征的迹象,未观察到与疲劳裂缝的距离增加。初始单β相的重结晶样品的EBSD分析显示,循环载荷引起的微观结构和β相的高不稳定性的相反变化。检测到依赖于施加的应力幅度和循环的完全马氏体微观结构以及依赖于施加的应力振荡和循环的主要发展以及额外的{332} <113>孪晶。

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