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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Grain Selection During Casting Ni-Base, Single-Crystal Superalloys with Spiral Grain Selector
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Grain Selection During Casting Ni-Base, Single-Crystal Superalloys with Spiral Grain Selector

机译:带螺旋晶粒选择器的铸造镍基单晶高温合金时的晶粒选择

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摘要

The behavior of grain selection in a spiral grain selector during investment casting of a Ni-base, single-crystal (SX) superalloy, DD3, has been investigated by electron backscattered diffraction (EBSD) techniques and optical microscopy. The results indicated that the main function of starter block is to optimize the crystal orientation. During the process of grain selection in spiral passage, the grain near the inner wall of spiral passage was usually selected as the final single crystal. It was found that the dendrites near the inner wall could develop new tertiary dendritic arms that paralleled the primary dendrites from the secondary dendritic arms to overgrow the dendrites far away from the inner wall. The crystal orientation that was examined by X-ray diffraction revealed that (1) the crystal orientation did not change obviously with increasing spiral thickness or angle and (2) the crystal orientation could be optimized by increasing the withdrawal rate and ceramic mold temperature. The influence of pouring temperature on crystal orientation was also discussed.
机译:已经通过电子背散射衍射(EBSD)技术和光学显微镜研究了镍基单晶(SX)高温合金DD3精铸时在螺旋晶粒选择器中的晶粒选择行为。结果表明,起始剂块的主要功能是优化晶体取向。在螺旋通道的晶粒选择过程中,通常选择螺旋通道内壁附近的晶粒作为最终的单晶。发现内壁附近的树枝状晶体可以形成新的第三树枝状树枝,其与第二树枝状树枝中的初级树枝状树枝平行,从而使远离内壁的树枝状树枝生长过度。通过X射线衍射检查的晶体取向表明:(1)晶体取向不会随着螺旋厚度或角度的增加而明显改变;(2)晶体取向可以通过提高拉拔速率和陶瓷模具温度来优化。还讨论了浇注温度对晶体取向的影响。

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