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Alloying Effects on the Competition Between Discontinuous Precipitation Versus Continuous Precipitation of δ/η Phases in Model Ni-Based Superalloys

机译:合金化对Ni基超合金模型中不连续降水与δ/η相连续沉淀的竞争的影响

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Alloying effects on the competition between discontinuous and continuous precipitation of δ-Ni_3Nb (D0_a) phase and η-Ni_3Ti (D0_(24)) phase were investigated in model Ni-Cr-Fe-Nb and Ni-Ti-based alloys, respectively, to aim at designing polycrystalline Ni based superalloys with better temperature capability. Discontinuous precipitation tends to occur at lower temperatures, while continuous precipitation dominates at higher temperatures in the two alloy systems. The addition of Mo promotes continuous precipitation with respect to discontinuous precipitation while that of Ti promotes discontinuous precipitation rather than continuous precipitation in δ phase precipitation alloys. A replacement of Ti with Mo promotes continuous precipitation with respect to discontinuous precipitation in η phase precipitation alloys at 800°C. The observed alloying effects are discussed in terms of chemical driving force, interfacial energy between the matrix phase and the δ(η) phases, and coherency strain caused by the formation of the metastable phases prior to the formation of δ/η phases.
机译:研究了δ-Ni_3NB(D0_3NB(D0_A)相和η-Ni_3Ti(D0_(24))相的不连续和连续沉淀的竞争的合金作用,分别在Ni-Cr-Fe-Nb和Ni-Ti基合金的模型中研究,目的旨在设计具有更好温度能力的多晶硅Ni高温合金。在较低温度下倾向于发生不连续的沉淀,而连续沉淀在两个合金系统中的较高温度下占主导地位。在δ相沉淀合金中促进不连续沉淀的不连续沉淀,加入Mo促进连续沉淀而不是在δ相沉淀合金中连续沉淀。用MO替代Ti促进在800℃下的η相沉淀合金中的不连续沉淀的连续沉淀。观察到的合金化效果在化学驱动力方面,基质相和δ(η)阶段之间的界面能量,以及由在形成δ/η相之前形成亚稳态相的相干菌株。

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