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取向对常规铸造多晶镍基高温合金亚晶界开裂的影响。

Effect of crystallographic orientation on subcritical grain boundary cracking in a conventionally cast polycrystalline nickel-based superalloy.

机构信息

School of Materials Engineering, Purdue University, West Lafayette, IN 47906, USA.

出版信息

Microsc Microanal. 2013 Aug;19(4):978-87. doi: 10.1017/S143192761300144X. Epub 2013 May 30.

Abstract

The role of grain orientation and grain boundary misorientation on the formation of subcritical grain boundary cracks in creep of a conventionally cast nickel-based superalloy has been studied. The crystallographic orientations of the grains adjacent to grain boundaries normal to the tensile axis were measured using electron backscattered diffraction. The difference in the Schmid factor for the {111} <112> slip system between the grains was compared to the occurrence of grain boundary cracking. In addition, the difference in the amount of potential primary creep was calculated. The cracked grain boundaries were found to have a larger difference in Schmid factor, as well as a larger difference in potential primary creep, compared with uncracked grain boundaries.

摘要

研究了晶粒取向和晶界偏角对传统铸造镍基高温合金蠕变中超临晶界裂纹形成的作用。使用背散射电子衍射测量了垂直于拉伸轴的晶界相邻晶粒的晶体取向。比较了晶粒间{111}<112>滑移系的Schmid 因子差值与晶界开裂的发生情况。此外,还计算了潜在的初始蠕变差异。与未开裂晶界相比,开裂晶界的 Schmid 因子差值以及潜在的初始蠕变差值都更大。

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