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Influence of Texture on Impact Toughness of Ferritic Fe-20Cr-5Al Oxide Dispersion Strengthened Steel

机译:织构对铁素体Fe-20Cr-5Al氧化物弥散强化钢冲击韧性的影响

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摘要

Fe-based oxide dispersion strengthened (ODS) steels are oriented to applications where high operating temperatures and good corrosion resistance is paramount. However, their use is compromised by their fracture toughness, which is lower than other competing ferritic-martenstic steels. In addition, the route required in manufacturing these alloys generates texture in the material, which induces a strong anisotropy in properties. The V-notched Charpy tests carried out on these alloys, to evaluate their impact toughness, reveal that delaminations do not follow the path that would be expected. There are many hypotheses about what triggers these delaminations, but the most accepted is that the joint action of particles in the grain boundaries, texture induced in the manufacturing process, and the actual microstructure of these alloys are responsible. In this paper we focused on the actual role of crystallographic texture on impact toughness in these materials. A finite elements simulation is carried out to solely analyze the role of texture and eliminate other factors, such as grain boundaries and the dispersed particles. The work allows us to conclude that crystallographic texture plays an important role in the distribution of stresses in the Charpy specimens. The observed delaminations might be explained on the basis that the crack in the grain, causing the delamination, is directly related to the shear stresses τ12 on both sides of the grain boundary, while the main crack propagation is a consequence of the normal stress to the crack.
机译:铁基氧化物弥散强化(ODS)钢主要用于要求高工作温度和良好耐腐蚀性的应用。但是,它们的使用受到断裂韧性的损害,该断裂韧性低于其他竞争的铁素体-马氏体钢。另外,制造这些合金所需的路线会在材料中产生织构,从而引起性能上的强烈各向异性。在这些合金上进行的V型缺口夏比试验评估了它们的冲击韧性,显示出分层没有遵循预期的路径。关于触发这些分层的原因有许多假设,但最被接受的是颗粒在晶界中的联合作用,在制造过程中引起的织构以及这些合金的实际微观结构是负责任的。在本文中,我们重点研究了晶体织构对这些材料的冲击韧性的实际作用。进行有限元模拟以仅分析纹理的作用并消除其他因素,例如晶界和分散的颗粒。这项工作使我们得出结论,即晶体结构在夏比试样中应力的分布中起着重要作用。观察到的分层可能是基于引起分层的晶粒中的裂纹与晶界两侧的切应力τ12直接相关,而主要裂纹扩展是由于法向应力导致的。裂纹。

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