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A high-strength silicide phase in a stainless steel alloy designed for wear-resistant applications

机译:专为耐磨应用设计的不锈钢合金中的高强度硅化物相

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摘要

Hardfacing alloys provide strong, wear-resistant and corrosion-resistant coatings for extreme environments such as those within nuclear reactors. Here, we report an ultra-high-strength Fe–Cr–Ni silicide phase, named π-ferrosilicide, within a hardfacing Fe-based alloy. Electron diffraction tomography has allowed the determination of the atomic structure of this phase. Nanohardness testing indicates that the π-ferrosilicide phase is up to 2.5 times harder than the surrounding austenite and ferrite phases. The compressive strength of the π-ferrosilicide phase is exceptionally high and does not yield despite loading in excess of 1.6 GPa. Such a high-strength silicide phase could not only provide a new type of strong, wear-resistant and corrosion-resistant Fe-based coating, replacing more costly and hazardous Co-based alloys for nuclear applications, but also lead to the development of a new class of high-performance silicide-strengthened stainless steels, no longer reliant on carbon for strengthening.
机译:堆焊合金为极端环境(例如核反应堆内的环境)提供坚固,耐磨且耐腐蚀的涂层。在这里,我们报道了在堆焊的铁基合金中有一个超高强度的Fe-Cr-Ni硅化物相,称为π-铁硅化物。电子衍射断层摄影术可以确定该相的原子结构。纳米硬度测试表明,π-铁硅化物相的硬度比周围的奥氏体和铁素体相的硬度高2.5倍。 π-亚铁硅化物相的抗压强度极高,即使负载超过1.6 GPa,也不会屈服。这种高强度的硅化物相不仅可以提供一种新型的,坚固,耐磨和耐腐蚀的铁基涂层,替代了核应用中成本更高且危害更大的钴基合金,而且还导致了碳纳米管的发展。新型的高性能硅化物强化不锈钢,不再依赖碳来强化。

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