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Evaluation of microstructure and tensile properties of grain-refined,Ti-alloyed ferritic stainless steel fabricated by laser powder bed fusion

机译:通过激光粉末融合制造晶粒精制,Ti合金铁素体不锈钢微观结构和拉伸性能的评价

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摘要

Many alloys produced by Laser Powder Bed Fusion (LPBF) suffer from coarse grains and anisotropic mechanical properties. Here, we investigate how the addition of Ti can cause significant strengthening via grain refinement in a model ferritic stainless steel. We perform LPBF experiments using elemental Fe, Cr, and Ti powders (with significant O impurity in the Fe powder) and perform microstructural analysis by SEM, EDS and EBSD as well as tensile tests on the alloys Fe-19at.%Cr and Fe-19at.%Cr-5at.%Ti. The Fe-Cr alloy displays very large grains after LPBF and a strong cube texture, rendering its mechanical properties similar to a single crystal. In the Fe-Cr-Ti alloy, TiO particle formation in the melt causes strong grain refinement, leading to a texture-free microstructure consisting of equiaxed grains ~1.6 pm in diameter. The 0.2% proof strength of the ternary alloy is more than double that of the binary alloy (281 Mpa → 591 Mpa), and the work hardening rate is also increased. While the elongation at fracture is reduced for the Fe-Cr-Ti alloy, at ~15 %, it remains sufficient, and samples show ductile fracture surfaces. We estimate that the grain refinement accounts for the majority of the strengthening, however, solid solution strengthening and the effect of the texture are also significant.
机译:通过激光粉末融合(LPBF)产生的许多合金患有粗晶粒和各向异性机械性能。在这里,我们研究了如何通过模型铁素体不锈钢中的晶粒细化引起Ti的添加能力。我们使用元素Fe,Cr和Ti粉末进行LPBF实验(在Fe粉末中具有显着的O杂质),并通过SEM,EDS和EBSD进行微观结构分析以及合金Fe-19at的拉伸试验。%Cr和Fe- 19at。%Cr-5at。%Ti。 Fe-Cr合金在LPBF和强大的立方体纹理后显示出非常大的谷物,使其与单晶类似的机械性能。在Fe-Cr-Ti合金中,熔体中的TiO颗粒形成导致强大的晶粒细化,导致无纹理的微观结构,包括直径〜1.6μm的等轴〜1.6μm。三元合金的0.2%检测强度大于二元合金的两倍(281MPa→591MPa),也增加了工作加固率。虽然Fe-Cr-Ti合金的裂缝伸长率降低,但在〜15%时,它仍然足够,并且样品显示延性裂缝表面。我们估计谷物改进占大多数加强的占,固体解决方案强化和质地的效果也很重要。

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