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Phase Studies of Additively Manufactured Near Beta Titanium Alloy-Ti55511

机译:β钛合金-TI55511附近含有碱性制造的相研究

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摘要

The effect of electron-beam melting (EBM) and selective laser melting (SLM) processes on the chemical composition, phase composition, density, microstructure, and microhardness of as-built Ti55511 blocks were evaluated and compared. The work also aimed to understand how each process setting affects the powder characteristics after processing. Experiments have shown that both methods can process Ti55511 successfully and can build parts with almost full density (>99%) without any internal cracks or delamination. It was observed that the SLM build sample can retain the phase composition of the initial powder, while EBM displayed significant phase changes. After the EBM process, a considerable amount of α Ti-phase and lamella-like microstructures were found in the EBM build sample and corresponding powder left in the build chamber. Both processes showed a similar effect on the variation of powder morphology after the process. Despite the apparent difference in alloying composition, the EBM build Ti55511 sample showed similar microhardness as EBM build Ti-6Al-4V. Measured microhardness of the EBM build sample is approximately 10% higher than the SLM build, and it measured as 348 ± 30.20 HV.
机译:评价电子束熔化(EBM)和选择性激光熔化(SLM)工艺对化学组成,相组合物,密度,微观结构和如造建的Ti55511嵌段的微硬度的影响。该工作还旨在了解每个过程设置如何在处理后影响粉末特性。实验表明,两种方法都可以成功地处理TI55511,并且可以在没有任何内部裂缝或分层的情况下构建具有几乎全密度(> 99%)的部件。观察到SLM构建样品可以保留初始粉末的相组成,而EBM显示出显着的相变。在EBM工艺之后,在EBM构建样品中发现相当大量的αTi相和薄片状微观结构,并且在构建室中留下的相应粉末。这两种过程对过程后的粉末形态的变异效果类似。尽管合金化组合物的表观差异,EBM构建Ti55511样品显示出类似的微硬度作为EBM构建Ti-6Al-4V。 EBM构建样品的测量微硬度比SLM构建高约10%,测量为348±30.20HV。

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