γ' phase rafting in single crystal DD402 superalloy under element diffusion from outer sources
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摘要: 研究了熱等靜壓(HIP)連接DD402單晶合金與FGH95粉末合金的擴散偶中,DD402單晶合金的γ'相筏形化過程.提出了一種新的γ'相筏形化的機理,分析了γ'相筏形化的驅動力問題,建立了γ'相筏形化過程的物理模型.討論了筏形γ'片層厚度與原始γ'相的尺寸、體積分數以及γ'相形成元素的擴散流量之間的關系.結果表明,單晶合金的γ'筏形化是由于其形成元素的擴散使γ'定向長大.筏形化的過程包括兩個階段:一是γ'粒子的定向連接階段;二是筏形γ'片層的平坦化.筏形化γ'的初始片層厚度及筏形化方向主要由γ'原始尺寸及晶體取向決定.Abstract: The rafting procedure of γ' phase in single crystal DD402 for DD402/FGH95 diffusion couples bonded by hot isostatic pressing(HIP) was studied.A new rafting mechanism of γ' phase was suggested.The driving force of rafting γ' phase was analyzed and a physical model of the rafting procedure of γ' phase was constructed.The relations of the width of rafted γ' phase pieces with the original size,volume fraction and constitutional element diffusion flux of γ' phase were discussed in details.The results show that the rafted reason of γ' phase in the single crystal is the continuous directional growth of γ' phase driven by diffusion of its constitutional elements.The rafted process includes two stages,one is the directional connect of γ' particles,and the other is the plainness process of γ' pieces.The width and direction of rafted γ' pieces were closely related to the original size and crystal orientation of γ' phase.
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Key words:
- single crystals /
- superalloys /
- rafting /
- diffusion /
- hot isostatic pressing
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