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Microstructure and Creep Property of DZ125 Nickel-based Superalloy

机译:DZ125镍高温合金的组织和蠕变性能

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By means of creep property measurement and microstructure observation, an investigation has been made into the creep behaviors of DZ125 superalloy at high temperature and low stress. Results showed that the superalloy under the applied stress of 137MPa at 1293 K displayed a better creep resistance, and the apparent creep activation energy of the alloy during steady state creep was measured to be Q = 325.57 kJ/mol. The various microstructures were displayed in different regions of the sample, thereinto, the rafted γ' phase was uniformly distributed in the regions far away from the fracture, but the twisted and coarser rafted γ' phase appeared in the region near the fracture. The deformation mechanism of the alloy during steady state creep was the dislocations climbing over the rafted γ' phase. In the later stage of creep, significant amount of dislocations shearing into the rafted γ'-phase promoted the initiation and propagation of the cracks along the boundaries up to the occurrence of fracture, which was though to the fracture mechanism of the alloy during creep.
机译:通过蠕变性能测量和微观结构观察,在高温和低应力下,已经进入DZ125高温合金的蠕变行为。结果表明,在1293k的施加应力下的高温合金显示在1293k下显示出更好的蠕变性,并且测量稳态蠕变期间合金的表观蠕变激活能量为Q = 325.57 kJ / mol。各种微观结构在样品的不同区域中显示,其中圆形γ'相均匀地分布在远离裂缝的区域中,但是扭曲和粗糙的圆形γ'相在裂缝附近的区域中出现。稳态蠕变期间合金的变形机制是爬过弧形γ'相的脱位。在蠕变的后期,将大量的脱位剪切到圆弧γ'-阶段促进裂缝沿着裂缝发生的裂缝的起始和繁殖,但是在蠕变期间对合金的裂缝机制较此。

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