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Bimodal grain size distribution: An effective approach for improving the mechanical and corrosion properties of Fe-Cr-Ni alloys

机译:双峰粒度分布:提高Fe-Cr-Ni合金机械和腐蚀性能的有效方法

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摘要

The effect of nanocrystalline grain size and bimodal distribution of nano- and microcrystalline grain sizes on the oxidation resistance and mechanical properties of Fe-based alloys has been investigated. Nanocrystalline and bimodal Fe-10Cr-5Ni-2Zr alloy pellets, prepared by mechanical alloying route, have been compared with conventional microcrystalline stainless steel alloys having 10 and 20 wt Cr. Zr addition has been shown to improve the grain size stability at high temperatures. A significant improvement in the ductility of bimodal alloys with respect to anocrystalline alloys was seen presumably due to the presence of the microcrystalline grains in the matrix. The high temperature oxidation of nanocrystalline and bimodal alloys at 550 C shows superior oxidation resistance over microcrystalline alloy of similar composition (Fe-10Cr- 5Ni) and comparable to that of microcrystalline alloy having twice as much Cr (Fe-20Cr-5Ni). Secondary Ion Mass Spectroscopy depth profiling confirms the hypothesis that nanostructure facilitates the enrichment of Cr at the oxide metal interface resulting in the formation of a passive oxide layer.
机译:研究了纳米晶粒尺寸以及纳米和微晶粒尺寸的双峰分布对铁基合金的抗氧化性和力学性能的影响。通过机械合金化路线制备的纳米晶和双峰Fe-10Cr-5Ni-2Zr合金球团已与具有10和20 wt Cr的常规微晶不锈钢合金进行了比较。已表明添加Zr可改善高温下的晶粒尺寸稳定性。据推测,由于基体中存在微晶粒,双峰合金相对于阳极晶体合金的延展性有了显着改善。纳米晶体和双峰合金在550°C的高温氧化性能优于具有相似成分(Fe-10Cr-5Ni)的微晶合金,并且与具有两倍Cr(Fe-20Cr-5Ni)的微晶合金相当。二次离子质谱深度分析证实了以下假设:纳米结构有助于在金属氧化物界面富集Cr,从而形成钝化氧化物层。

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