首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Mechanisms of Tensile and Creep Deformation at Elevated Temperatures in a Ni-Base Superalloy Alloy 263
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Mechanisms of Tensile and Creep Deformation at Elevated Temperatures in a Ni-Base Superalloy Alloy 263

机译:镍基高温合金263高温下的拉伸和蠕变变形机理

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The tensile and creep behaviors of Alloy. 263, which is a wrought Ni-base superalloy used for gas turbine combustion, systems, was studied. Anomalous increase of yield strength and abrupt decrease of elongation with increasing temperature were observed after tensile testing at an intermediate temperature. Elongation of the superalloy decreased as the temperature increased to and above 540℃, and it reached a minimum value at 760℃. It was found that creep strain was also very low at the same temperature. Inhomogeneous deformation with intensive slip bands was observed in the specimens tested at low temperature. A thermally-assisted dislocation climb process was regularly conducted at high temperature. Twinning was found to be an important mechanism of both tensile and creep deformations of the superalloy at an intermediate temperature where ductility minimum was observed.
机译:合金的拉伸和蠕变行为。 263是一种用于燃气轮机燃烧的变形镍基高温合金。在中温下进行拉伸试验后,观察到屈服强度异常增加,而伸长率突然降低。温度超过540℃时,高温合金的伸长率降低,在760℃时达到最小值。发现在相同温度下蠕变应变也非常低。在低温下测试的样品中观察到了具有强烈滑移带的不均匀变形。在高温下定期进行热辅助位错爬升过程。发现孪生是在观察到塑性最小的中间温度下高温合金的拉伸和蠕变变形的重要机理。

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