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FGH96高溫合金中一次碳化物形成規律
發布人:上海艾荔艾金屬材料有限公司www.jshcn.cn
更新時間:2015-10-17
基于Thermo-Calc熱力學計算軟件及相應的Ni基數據庫,對FGH96高溫合金中一次碳化物的生成機理進行研究,計算FGH96高溫合金可能的平衡析出相及C、N、Nb、Ti元素對合金中一次碳化物相MC+M(C,N)析出行為的影響,對比分析FGH96高溫合金中一次碳化物相的計算結果與掃描電鏡圖及能譜分析的化學成分。
FGH96高溫合金中一次碳化物形成規律Formation mechanism of primary carbides in FGH96 superalloy
基于Thermo-Calc熱力學計算軟件及相應的Ni基數據庫,對FGH96高溫合金中一次碳化物的生成機理進行研究,計算FGH96高溫合金可能的平衡析出相及C、N、Nb、Ti元素對合金中一次碳化物相MC+M(C,N)析出行為的影響,對比分析FGH96高溫合金中一次碳化物相的計算結果與掃描電鏡圖及能譜分析的化學成分。結果表明:C含量對一次碳化物相的析出量影響較大,而對析出溫度影響較??;N含量對析出溫度有非常明顯的影響,而對一次碳化物相的析出量影響較?。籒b和Ti含量對FGH96高溫合金中一次碳化物相的析出行為只有輕微的影響。因此,FGH96高溫合金中一次碳化物相的析出行為主要受C和N的影響。由計算得出的一次碳化物相的成分變化結果結合掃描電鏡圖和能譜分析結果可推斷出,FGH96高溫合金中含有N時,首先從液態合金中析出含有微量C的氮化物TiN,兩相區析出的MC型碳化物會在TiN表面析出,形成以TiN為核心的一次碳氮化物M(C,N)。
The formation mechanism of primary carbides in FGH96 superalloy was investigated based on the Thermo- Calc thermodynamic software combined with the related nickel-based database. Using Thermo-Calc thermodynamic software, the possible equilibrium precipitation phases were calculated, and the effects of C, N, Nb and Ti elements on the precipitation behaviors of the primary carbide phase MC+M(C,N) were investigated. The calculated results of the primary carbide phase in FGH96 superalloy were compared with scanning electric microscope (SEM) image as well as measured chemical composition by energy dispersive spectrometer (EDS) of the FGH96 superalloy samples. The results show that the C content has a large effect on the mass fraction of the precipitated primary carbide phase, and the influence on the precipitation temperature is small. The N content shows a great effect on the precipitation temperature whereas, a very limited effect on the mass fraction of the precipitated primary carbide phase. The contents of Ti and Nb have slight effect on the precipitation behaviors of the primary carbide phase in FGH96 superalloy. Therefore, the contents of C and N control the precipitation behaviors of the primary carbide phase in FGH96 superalloy. By the result of thermodynamic calculation, SEM and EDS, it can be proposed that the primary TiN containing small amount of C first precipitates from the liquid FGH96 superalloy containing N, and then the MC-type carbides precipitate on the surface of TiN in mush zone, and form a type carbonitride with TiN as core.
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