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澆注溫度對GH625合金鑄態顯微組織的影響

Effect of casting temperature on the microstructure of as-cast GH625 alloy

  • 摘要: 基于Thermo-Calc熱力學模擬軟件、掃描電鏡和能譜儀等實驗手段,研究GH625合金鑄態試樣棒的顯微組織,并對比討論澆注溫度對其顯微組織的影響規律.GH625合金的鑄態顯微組織為發達的樹枝晶,枝晶間可見δ相與M6C型碳化物伴生析出.一次枝晶臂間距λ1和二次枝晶臂間距λ2均隨著澆注溫度的升高而增大,而枝晶偏析程度則同時受擴散時間和擴散距離兩方面因素的共同作用,綜合相互作用導致1420℃澆注試樣里Nb元素高度偏析,為枝晶間δ相的大量析出提供有利的濃度條件.因此,在制定澆注工藝時,需要綜合考慮擴散時間和擴散距離的影響程度,選取合適的澆注溫度(或者冷卻速率).

     

    Abstract: The microstructure of as-cast GH625 alloy was investigated on the basis of experimental methods such as Thermo-Calc software,scanning electron microscopy and energy dispersive spectroscopy. The effect of casting temperature on the microstructure was also analyzed by comparing different samples. The microstructure of as-cast GH625 alloy is a dendritic structure and M6C carbides accompanied with δ phase precipitate in the interdendritic area. Both primary dendrite arm spacing(λ1) and second dendrite arm spacing(λ2) increase with the increase of casting temperature; however,the microsegregation is affected by both diffusion distance and diffusion time. The comprehensive interaction of these two factors leads to the greatest microsegregation degree of Nb at 1420℃,which contributes to δ phase precipitation in the interdendritic area. As a result,diffusion distance and diffusion time should be comprehensively considered in making the casting process,so as to choose a proper casting temperature(or cooling rate).

     

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