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Effect of delta ferrites on the anisotropy of impact toughness in martensitic heat-resistant steel

机译:δ铁素体对马氏体耐热钢冲击韧性各向异性的影响

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To avoid brittle failure of the final-stage turbine blades, it is necessary to understand the anisotropy mechanism in martensitic heat-resistant steel 10Cr12Ni3Mo2VN. This study focused on the effect of delta ferrites on the anisotropy of impact toughness by investigating the relationship between the microstructures and the anisotropy of impact toughness. It was mainly interested in the effect of banded delta ferrites on the transverse impact toughness of experimental steel after quenching and tempering. It was found that banded delta ferrites cause banded brittle cracks and induce tempered martensite matrix to fracture in quasi-cleavage mode, which leads to the embrittlement in transverse specimens and the anisotropy of impact toughness. The embrittlement caused by banded delta ferrites is unrelated to other precipitates such as M23C6-type carbides or MX-type precipitates. In addition, by removing the banded delta ferrites, it can eliminate the anisotropy of impact toughness in the experimental steel. It was also found that conventional heat treatment could not improve the isotropy of impact toughness since it has little influence on the content of banded delta ferrites. As suggested, the use of upsetting-stretching forging strategy promises a great of improvement of isotropy of impact toughness as it can remarkably reduce the amount of banded delta ferrites.
机译:为了避免末级涡轮叶片的脆性失效,有必要了解马氏体耐热钢10Cr12Ni3Mo2VN的各向异性机理。本研究通过研究微观组织与冲击韧性各向异性之间的关系,着重研究了δ铁素体对冲击韧性各向异性的影响。主要关注带状三角铁素体对淬火和回火后实验钢的横向冲击韧性的影响。研究发现,带状δ铁素体会导致带状脆性裂纹,并导致回火马氏体基体以准解理方式断裂,从而导致横向试样的脆化和冲击韧性的各向异性。带状δ铁素体引起的脆化与其他析出物无关,例如M23C6型碳化物或MX型析出物。另外,通过去除带状δ铁素体,可以消除实验钢的冲击韧性的各向异性。还发现常规热处理不能改善冲击韧性的各向同性,因为它对带状δ铁素体含量几乎没有影响。如所建议的那样,the粗拉伸锻造策略的使用有望极大地改善冲击韧性的各向同性,因为它可以显着减少带状δ铁素体的数量。

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