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含Hf鎳基粉末高溫合金快速凝固粉末顆粒特性

Characteristics of rapidly solidified powder particles in Hf-modified nickel-based P/M superalloys

  • 摘要: 采用掃描電鏡、透射電鏡及其附帶的能譜儀和碳復型萃取技術等多種手段研究了不同Hf含量的FGH96合金粉末顆粒顯微組織、枝晶間合金元素偏析和析出相.發現Hf含量可以改變粉末顆粒內部樹枝晶、胞狀長大晶和微晶凝固組織的比例,粉末的快速凝固組織形態主要取決于冷卻速率和固液界面前沿溫度梯度與長大速度的比值.不同Hf含量的FGH96合金粉末顆粒中,Nb、Ti、Zr和Al均富集于枝晶間,Co、Cr、W和Ni均富集于枝晶軸.當Hf質量分數為0.3%時,Ti、Nb、Zr、Hf等強碳化物形成元素的枝晶偏析程度最小.在快速凝固粉末顆粒中,Hf對氧含量比碳含量更敏感,優先形成更穩定的氧化物HfO2.

     

    Abstract: The effects of Hf content on the microstructure, dendrite microsegregation and precipitated phase of FGH96 superalloy powders were investigated by scanning electron microscopy, transmission electron microscopy with energy-dispersive spectrometry, and carbon extraction method. It is found that Hf content can change the proportion of dendrite, cellular and microcrystal structures. The microstructures of the superalloy powders mainly depend on cooling rate and the ratio of thermal gradient to solid/liquid interface velocity. Nb, Ti, Zr and Al elements enrich between the dendrite arms, but Co, Cr, W and Ni elements enrich in the dendrite axis for all FGH96 superalloy powders with different Hf contents. The dendrite microsegregations of Ti, Nb, Zr and Hf elements are the least when the mass fraction of Hf is 0.3%. Hf is more sensitive to the oxygen content than the carbon of the rapidly solidified powder particles, and forms the stable oxide of HfO2 firstly.

     

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