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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Directional and Single-Crystal Solidification of Ni-Base Superalloys: Part II. Coincidence Site Lattice Character of Grain Boundaries
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Directional and Single-Crystal Solidification of Ni-Base Superalloys: Part II. Coincidence Site Lattice Character of Grain Boundaries

机译:镍基高温合金的定向和单晶凝固:第二部分。晶界重合点格特征

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摘要

The development of grain boundary misorientations with an evolving axial texture during directional solidification has been examined using the electron backscattered diffraction (EBSD) technique on the Ni-base superalloys, CMSX4 and CM186LC. A preferred grain boundary misorientation distribution (GBMD) for a sharp <001> axial texture in CM186LC was associated with a clustering of misorientation axes (MAx) in the proximity of <001>. This is accompanied by an enhanced distribution of coincidence site lattice (CSL) boundaries. The increased distribution of low angle boundaries, #SIGMA#1 and #SIGMA#5, can be attributed to the existence of a preferred MAx and accommodation by secondary intrinsic grain boundary dislocations. The more diffuse <001> axial texture in CMSX4 is associated with a significant proportion of MAx deviating from <001> and a dramatic reduction in the proportion of CSL boundaries.
机译:在镍基高温合金CMSX4和CM186LC上,使用电子背散射衍射(EBSD)技术检查了定向凝固过程中具有演化的轴向织构的晶界取向失准的发展。 CM186LC中清晰的<001>轴向纹理的首选晶界取向错误分布(GBMD)与<001>附近的取向错误轴(MAx)的聚类相关。这伴随着重合点阵晶格(CSL)边界的增强分布。低角度边界#SIGMA#1和#SIGMA#5的分布增加,可以归因于首选MAx的存在和通过次生本征晶界错位的调节。 CMSX4中更弥漫的<001>轴向纹理与显着比例的MAx偏离<001>以及CSL边界比例的显着降低有关。

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