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Effects of Carbon Content, Annealing Condition and Internal Defects on the nucleation, growth and coarsening of P-type Carbides in High Niobium Containing TiAl Alloys

机译:碳含量,退火条件和内部缺陷对含有高铌合金的碳化物成核,生长和粗化的影响

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The nucleation, growth and coarsening of carbides is investigated in high niobium containing TiAl alloys by diffraction and transmission electron microscopy. Higher carbon content increases the dissolution temperature of carbides. The solubility of carbon is much higher in a γ/α_2-phase alloy than in the γ phase alone. Hereby no significant influence of Nb on carbon solubility is found. Crystallographic defects as grain boundaries and dislocations promote carbide nucleation which results in a carbide precipitation sequence starting first at grain boundaries, then at dislocations and only later in the γ matrix away from crystallographic defects. The consumption of carbon by grain boundary carbides or neighboring α_2 grains also generates a precipitate free zone in γ grains near the grain boundary.
机译:通过衍射和透射电子显微镜在高铌的Tial合金中研究碳化物的成核,生长和粗化。较高的碳含量增加了碳化物的溶解温度。碳的溶解度在γ/α_2相合金中高于单独的γ相中。因此,没有发现Nb对碳溶解度的显着影响。作为晶界和脱位的晶体缺陷促进碳化物成核,这导致首先在晶界开始的碳化物沉淀序列,然后在位错,并且仅在γ基质中远离晶体缺陷的γ基质。通过晶界碳化物或相邻α_2颗粒的碳的消耗也在晶界附近的γ颗粒中产生沉淀自由区。

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