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Comparison of Ductile-to-Brittle Transition Behavior in Two Similar Ferritic Oxide Dispersion Strengthened Alloys

机译:两种相似的铁素体氧化物弥散强化合金的韧性至脆性转变行为的比较

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摘要

The ductile-to-brittle transition (DBT) behavior of two similar Fe-Cr-Al oxide dispersion strengthened (ODS) stainless steels was analyzed following the Cottrell–Petch model. Both alloys were manufactured by mechanical alloying (MA) but by different forming routes. One was manufactured as hot rolled tube, and the other in the form of hot extruded bar. The two hot forming routes considered do not significantly influence the microstructure, but cause differences in the texture and the distribution of oxide particles. These have little influence on tensile properties; however, the DBT temperature and the upper shelf energy (USE) are significantly affected because of delamination orientation with regard to the notch plane. Whereas in hot rolled material the delaminations are parallel to the rolling surface, in the hot extruded material, they are randomly oriented because the material is transversally isotropic.
机译:遵循Cottrell-Petch模型分析了两种相似的Fe-Cr-Al氧化物弥散强化(ODS)不锈钢的延性-脆性转变(DBT)行为。两种合金都是通过机械合金化(MA)制成的,但是采用不同的成型途径。一种制成为热轧管,另一种制成热挤压棒。所考虑的两种热成型路线不会显着影响微观结构,但会导致织构和氧化物颗粒分布的差异。这些对拉伸性能几乎没有影响。但是,由于相对于缺口平面的分层方向,DBT温度和上层搁架能量(USE)受到显着影响。在热轧材料中,分层平行于轧制表面,而在热挤压材料中,由于材料是横向各向同性的,因此它们是无规取向的。

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