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The Influence of Void Orientation on Stress and Strain Fields for Nickel-based Single Crystal Superalloys Under Creep Loading

机译:空隙取向对蠕变载荷下镍基单晶超合金应力和应变场的影响

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Fracture surface of crept nickel-based single crystal superalloy specimen shows that voids play significant role in creep rupture. In this study, the unit cell model containing two voids was established to study the influence of void orientation on the stress and strain distribution for nickel-based single crystal superalloy under creep loading with the creep constitutive relationship based on the crystal slip theory. Three cases were considered with different angle between the line connecting the centers of two voids and loading axis. The distributions of equivalent Mises stress, maximal resolved shear stress and equivalent creep strain have been given for different creep stages. The results show that the void orientation has remarkable influence on the void growth and the stress and strain distribution during creep.
机译:克切基镍的单晶超合金标本的断裂表面表明,空隙在蠕变破裂中发挥着重要作用。在该研究中,建立了包含两个空隙的单元电池模型,以研究空隙取向对基于晶体滑移理论的蠕变构成关系下蠕变载荷下镍基单晶超合金的应力和应变分布的影响。在连接两个空隙和装载轴的线之间的线之间考虑了三种情况。已经给出了不同蠕变阶段的等效误差应力,最大分辨的剪切应力和等效蠕变应变的分布。结果表明,空隙取向对蠕变期间的空隙生长和压力和应变分布具有显着影响。

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