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Influence of Coincidence Site Lattice Boundary on Creep Resistance of P91 Steel Weldments

机译:重合现场晶格边界对P91钢焊蠕变电阻的影响

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The grain boundary structure is usually described by the coincidence site lattice (CSL) model based on the misorientation of adjoining crystals. Therefore, the objective of the present investigation is to seek the correlation between CSL fraction and creep resistance of modified 9Cr-lMo steel (P91) with and without boron addition. Results showed that CSL fraction increases with increase in heat treatment temperature and this increase is more prominent in boron containing modified 9Cr-lMo steel. Creep test results show the increase in creep rupture life with increase in CSL fraction for both the base metals; but this increase is more in boron containing steel than the boron free steel. This improvement is attributed to the stability of CSL boundaries in the material. In spite of the increase in CSL boundaries with normalizing heat treatment temperature, boron free material shows less creep rupture life in its weldment than the boron containing steel weldment.
机译:晶界结构通常由符合现场晶格(CSL)模型来描述基于邻接晶体的错误化。 因此,本研究的目的是寻求CSL分数与改性的9CR-LMO钢(P91)的抗蠕变电阻之间的相关性,无硼添加。 结果表明,CSL分数随着热处理温度的增加而增加,含有改性的9Cr-LMO钢的硼更突出。 蠕变试验结果显示蠕变破裂寿命的增加随着基础金属的CSL分数增加; 但这种增加在硼钢的钢板比硼游离钢更多。 这种改进归因于材料中CSL边界的稳定性。 尽管CSL界限具有正常化的热处理温度,但是自由材料在其焊接中显示比含硼钢焊接更小的蠕变寿命。

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