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Effect of microstructure on crack propagation in high-temperature fatigue of directionally solidified Ni-based superalloy

机译:显微组织对定向凝固Ni基高温合金高温疲劳裂纹扩展的影响

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In order to clarify the crack propagation properties of an anisotropic material (Ni-based directionally solidified superalloy), longitudinally loaded specimens (L-specimens) and transversely loaded specimens (T-specimens) with a crack are subjected to high temperature fatigue. The crack propagation rate is reasonably well correlated with the effective stress intensity factor range regardless of the propagation direction (specimens L and T), the stress range and the stress ratio. However, the crack propagation rate shows a notable fluctuation particularly in the T-specimens. It is at most about five times faster than the average. The fracture surface features can be classified into four types with three transgranular and one intergranular types. In the former, though the crack is along the {100} or {110} planes on a macroscopic scale, it threads through the {111} or {100} planes on a microscopic scale. Crack propagation is notably accelerated in the intergranular region, while deceleration is caused by crack branching.
机译:为了阐明各向异性材料(Ni基定向凝固的高温合金)的裂纹扩展特性,对具有裂纹的纵向载荷试样(L试样)和横向载荷试样(T试样)进行高温疲劳。无论扩展方向(试样L和T),应力范围和应力比如何,裂纹的扩展速率都与有效应力强度因子范围合理相关。但是,裂纹扩展率显示出明显的波动,特别是在T形试样中。它最多比平均速度快大约五倍。骨折表面特征可分为四种类型,其中三种是跨晶型的,一种是晶间型的。在前者中,尽管裂纹在宏观尺度上沿着{100}或{110}平面,但在微观尺度上却穿过{111}或{100}平面。裂纹扩展在晶间区域明显加快,而减速是由裂纹分支引起的。

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