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Ti-6Al-4V Billet Produced by Compaction of BE Powders Using Equal-Channel Angular Pressing

机译:通过等通道角挤压将BE粉末压制成型的Ti-6Al-4V钢坯

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In the present study, ECAP compaction was used to produce Ti-6Al-4V billet from CP Ti powder mixed with two different Al-V master alloys. It was demonstrated that ECAP at 400 ℃ with applied back-pressure of about 210 MPa permits consolidation of the powder mixtures to relative green densities as high as 99.3 %. A combination of temperature, high hydrostatic pressure and plastic shear deformation gave rise to excellent green densities and good compositional homogeneity due to enhanced self-diffusion. It was shown that the temperature of sintering required after direct compaction of BE powders can be reduced by 150-250℃ if compaction is conducted by ECAP with back-pressure. This becomes possible due to high green density and the presence of a large number of fast diffusion paths associated with dislocations and grain boundaries. It is suggested that the ECAP-based processing route may offer a significant saving of production cost.
机译:在本研究中,ECAP压实被用于由CP Ti粉末与两种不同的Al-V中间合金混合而成的Ti-6Al-4V钢坯。结果表明,在400℃的ECAP下,施加约210 MPa的背压,可使粉末混合物固结至相对生坯密度高达99.3%。温度,高静水压力和塑性剪切变形的结合,由于增强的自扩散性,产生了极好的生坯密度和良好的成分均匀性。结果表明,如果采用背压ECAP压实法,直接压实BE粉后所需的烧结温度可降低150-250℃。由于高的绿色密度以及与位错和晶界相关的大量快速扩散路径的存在,这成为可能。建议基于ECAP的加工路线可以大大节省生产成本。

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