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Creep behavior of a novel Co-Al-W-base single crystal alloy containing Ta and Ti at 982 °C

机译:含Ta和Ti的新型Co-Al-W基单晶合金在982°C时的蠕变行为

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摘要

The tensile creep behavior of a Co-Al-W-base single crystal alloy containing Ta and Ti was investigated at 982 ∘C and 248 MPa. The lattice misfit of experimental alloy was measured to be positive by synchrotron X-ray diffraction at high temperature, and long term heat treatment at 1000 ∘C for 1000 h revealed a γ′ volume fraction of 75% without secondary phases. The creep test indicated that the creep properties of experimental alloy exceeded commercial 1st generation Ni-base single crystal superalloy CMSX-3 with respect to the rupture life. The initial cuboidal γ′ precipitates directionally coarsened parallel to the applied stress axis during the creep process. The stacking faults in {111} planes within γ′ rafts were the primary creep deformation mode by TEM investigation.
机译:研究了含Ta和Ti的Co-Al-W基单晶合金在982°C和248 MPa下的拉伸蠕变行为。在高温下通过同步加速器X射线衍射测得实验合金的晶格失配为正,并且在1000°C下长期热处理1000h显示出γ'的体积分数为75%,而没有第二相。蠕变测试表明,就断裂寿命而言,实验合金的蠕变性能超过了商用的第一代Ni基单晶高温合金CMSX-3。初始长方体γ'在蠕变过程中平行于所施加的应力轴方向定向粗化。透射电镜研究表明,γ'筏内{111}面的堆垛层错是主要的蠕变变形模式。

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