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Microstructural Evolution during Pressureless Sintering of Blended Elemental Ti-Al-V-Fe Titanium Alloys from Fine Hydrogenated-Dehydrogenated Titanium Powder

机译:加氢脱氢钛细粉混合元素Ti-Al-V-Fe钛合金无压烧结过程中的组织演变

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A comprehensive study was conducted on microstructural evolution of sintered Ti-Al-V-Fe titanium alloys utilizing very fine hydrogenation-dehydrogenation (HDH) titanium powder with a median particle size of 8.84 μm. Both micropores (5–15 μm) and macropores (50–200 μm) were identified in sintered titanium alloys. Spherical micropores were observed in Ti-6Al-4V sintered with fine Ti at the lowest temperature of 1150 °C. The addition of iron can help reduce microporosity and improve microstructural and compositional homogenization. A theoretical calculation of evaporation based on the Miedema model and Langmuir equation indicates that the evaporation of aluminum could be responsible for the formation of the macropores. Although reasonable densification was achieved at low sintering temperatures (93–96% relative density) the samples had poor mechanical properties due mainly to the presence of the macroporosity and the high inherent oxygen content in the as-received fine powders.
机译:利用中值粒径为8.84μm的非常精细的氢化-脱氢(HDH)钛粉对烧结Ti-Al-V-Fe钛合金的组织演变进行了全面研究。在烧结钛合金中均发现了微孔(5–15μm)和大孔(50–200μm)。在最低温度1150°C下,用细Ti烧结的Ti-6Al-4V中观察到球形微孔。铁的添加可以帮助减少微孔并改善微结构和组成的均质化。基于Miedema模型和Langmuir方程的蒸发理论计算表明,铝的蒸发可能是大孔形成的原因。尽管在较低的烧结温度(93-96%的相对密度)下实现了合理的致密化,但样品的机械性能较差,这主要是由于存在大孔且在收到的细粉中存在固有的高氧含量。

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