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Effect of crystal grain arrangement on fatigue crack initiation for Ni-based directionally solidified superalloy

机译:晶粒排列对Ni基定向凝固高温合金疲劳裂纹萌生的影响

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摘要

Low cycle fatigue tests at elevated temperature were conducted on a Ni-based directionally solidified superalloy subjected to transverse loading. To investigate the effect of the arrangement and the orientation of crystal grains on the crack initiation, the electron backscatter diffraction (EBSD) method was applied on the surfaces of the tested specimens. In addition, finite element analysis that considered the plastic behaviour of crystal grains was performed to evaluate the relationship between the crack initiation and the local stress. The results are summarised below. Regarding the effect of crystallographic properties on the surface of specimens without holes, cracks generally initiated near the grain boundaries. In addition, most cracks initiated near the grain boundaries that neighboured the grain whose secondary axis was more inclined to the normal direction of specimen surface than the grain located in the opposite surface. Similarly, the number of cycles to crack initiation tended to be small along the hole edges located on the grain boundaries for the specimens with holes. The results of finite element analysis showed non-uniform stress distribution due to the grain orientation. They revealed that high longitudinal stress developed near the grain boundaries with cracks for the specimens without holes. Stress correlated with the number of cycles to crack initiation along hole edges for specimens with holes.
机译:在承受横向载荷的镍基定向凝固高温合金上进行了高温下的低循环疲劳试验。为了研究晶粒的排列和取向对裂纹萌生的影响,将电子背散射衍射(EBSD)方法应用于被测样品的表面。此外,还进行了考虑晶粒塑性行为的有限元分析,以评估裂纹萌生与局部应力之间的关系。结果总结如下。关于结晶性能对无孔试样表面的影响,通常在晶界附近产生裂纹。另外,大多数裂纹是在与次晶轴比位于相反表面的晶面更靠近试样表面法线方向的晶粒附近的晶界附近产生的。类似地,沿着带有孔的样品的位于晶界上的孔边缘,裂纹萌生的循环次数趋于较小。有限元分析结果表明,由于晶粒取向,应力分布不均匀。他们发现,对于没有孔的试样,在晶界附近产生了高的纵向应力,并带有裂纹。应力与带孔试样沿孔边缘的裂纹萌生的循环次数有关。

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