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Stress Rupture Properties and Fracture Behavior of DD6 Single Crystal Superalloy

机译:DD6单晶超合金的应力破裂性能和断裂行为

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The stress rupture properties, fracture behavior and microstructure evolution of the second generation single crystal superalloy DD6 at different conditions were investigated. The results show that the alloy has excellent stress rupture properties. The fracture mechanism of stress rupture of the alloy at 760°C/785MPa, 760°C/750MPa and 760°C/720MPa shows quasi-cleavage mode and the fracture mechanism at 980°C/250MPa, 1070°C/160MPa and 1100°C/140MPa shows dimple mode, while the fracture mechanism at 850°C/550MPa shows quasi-cleavage and dimple mixture mode. Only a little change in the morphology of γ phase occurred at 760°C/750MPa. The y' rafts form at temperature above 760°C and the thickness of rafts increases with increasing temperature. The dislocation shear mechanism including stacking fault formation is. operative at lower temperature and high stress. The dislocation by-passing mechanism occurs to form networks at y/y' interface under the condition of high temperature and lower stress.
机译:研究了第二代单晶超合金DD6在不同条件下的应力破裂性能,断裂行为和微观结构演化。结果表明,合金具有优异的应力破裂性能。合金的应力破裂的断裂机制在760℃/ 785MPa,760℃/ 750MPa和760°C / 720MPa下显示出准切割模式和980°C / 250MPa,1070°C / 160MPa和1100的断裂机制°C / 140MPa显示凹坑模式,而850°C / 550MPa的断裂机制显示准切割和凹陷混合模式。 γ相的形态发生在760°C / 750MPa的情况下。在760℃高于760℃的温度和筏的厚度随着温度的增加而增加的Y'筏。包括堆叠故障形成的位错剪切机制是。在较低温度和高应力下操作。错位副通过机构在高温和低应力条件下在Y / Y'界面处形成网络。

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