School of Metallurgy and Materials, University of Birmingham, Birmingham, B15 2TT, United Kingdom.
Rolls-Royce plc, PO Box 31, Derby, DE24 8BJ, United Kingdom.
Sci Rep. 2017 Sep 11;7(1):11145. doi: 10.1038/s41598-017-10091-w.
Time dependent plastic deformation in a single crystal nickel-base superalloy during cooling from casting relevant temperatures has been studied using a combination of in-situ neutron diffraction, transmission electron microscopy and modelling. Visco-plastic deformation during cooling was found to be dependent on the stress and constraints imposed to component contraction during cooling, which mechanistically comprises creep and stress relaxation. Creep results in progressive work hardening with dislocations shearing the γ' precipitates, a high dislocation density in the γ channels and near the γ/γ' interface and precipitate shearing. When macroscopic contraction is restricted, relaxation dominates. This leads to work softening from a decreased dislocation density and the presence of long segment stacking faults in γ phase. Changes in lattice strains occur to a similar magnitude in both the γ and γ' phases during stress relaxation, while in creep there is no clear monotonic trend in lattice strain in the γ phase, but only a marginal increase in the γ' precipitates. Using a visco-plastic law derived from in-situ experiments, the experimentally measured and calculated stresses during cooling show a good agreement when creep predominates. However, when stress relaxation dominates accounting for the decrease in dislocation density during cooling is essential.
采用原位中子衍射、透射电子显微镜和模拟相结合的方法研究了从铸造相关温度冷却过程中单晶镍基高温合金的时变塑性变形。发现冷却过程中的粘塑性变形取决于冷却过程中对组件收缩施加的应力和约束,其机械组成包括蠕变和应力松弛。蠕变导致位错剪切γ'析出物、γ 通道中和 γ/γ'界面附近位错密度增加以及析出物剪切的渐进加工硬化。当宏观收缩受到限制时,松弛占主导地位。这导致位错密度降低和 γ 相中长段层错的出现导致加工软化。在应力松弛过程中,γ 和 γ'相中晶格应变的变化幅度相似,而在蠕变过程中,γ 相中晶格应变没有明显的单调趋势,只是 γ'析出物略有增加。使用从原位实验中得出的粘塑性定律,当蠕变占主导地位时,实验测量和计算的冷却过程中的应力显示出很好的一致性。然而,当应力松弛占主导地位时,必须考虑冷却过程中位错密度的降低。