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Formation Mechanism of Low Angle Boundary of DD6 Single Crystal Superalloy Blades

机译:DD6单晶超合金叶片低角度边界的形成机理

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The specimens were machined from DD6 single crystal superalloy blades with low angle boundary. The misorientation of LAB was measured with EBSD technique in scanning electron microscope. The microstructures of specimens with LAB were examined in optical microscope and scanning electron microscope. The formation mechanism of low angle boundary of DD6 single crystal superalloy blades was investigated. The results showed that he formation of LAB which is caused by the deviating orientation from ideal [001] and the angle between the crystal orientation and shell is crystal selection process acted by dendrite competitive growth rule. Part of dendrites have changed their growth orientation a little to the decreasing [001] orientation departure angle because of solidification condition fluctuating during dendrites branching process. The LAB is the obvious interface between the deforming dendrites and their surrounding dendrites.
机译:用低角度边界从DD6单晶超合金叶片加工标本。用EBSD技术在扫描电子显微镜中测量实验室的错误化。在光学显微镜和扫描电子显微镜中检查了用实验室的微观结构。研究了DD6单晶超合金叶片的低角度边界的形成机制。结果表明,由偏离理想的偏离取向和晶体取向和壳之间的角度形成的实验室的形成是由树突竞争生长规则作用的晶体选择过程。由于在树突分支过程中凝固条件波动,因此树枝状的一部分已经改变了它们的生长取向稍微取向脱离角度。该实验室是变形树突与周围树枝状的明显界面。

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