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Influence of initial microstructure on creep deformation behaviors and fracture characteristics of Haynes 230 superalloy at 900 degrees C

机译:初始显微组织对900℃下Haynes 230高温合金蠕变变形行为和断裂特性的影响

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The effect of initial microstructure on creep properties at 900 degrees C has been investigated in a solid-solution-strengthened Haynes 230 superalloy. The proprietary direct aging combined with controlled cooling rate led successfully to the transition of serrated grain boundaries. The serrated grain boundaries were found to have plane normal terminated by low-index planes. The lamellar carbides formed by discontinuous precipitation process became more significant in the serrated specimen, as the aging temperature to which the specimen was slow-cooled from 1280 degrees C decreased. The fine intragranular carbides which precipitate during initial stage of creep are responsible for the strong hardening effect by pinning the dislocations in the standard specimen. The serrated grain boundaries with stable planar M23C6 carbides enhanced highly creep ductility due to their high resistance to cavitation cracking. However, the serrated specimens exhibited a higher creep rate, which is attributed to the promotion of intragranular deformation due to the lack of fine intragranular carbides, as well as cavitation at the lamellar carbides. Based on the relationships between microstructural factors and creep behaviors at 900 degrees C, the optimal microstructure is discussed. (C) 2015 Elsevier Inc. All rights reserved.
机译:在固溶强化的Haynes 230超级合金中,已经研究了初始微观结构对900摄氏度蠕变性能的影响。专有的直接时效结合受控的冷却速度成功地导致了锯齿状晶界的过渡。发现锯齿状晶界的平面法线被低折射率平面终止。通过不连续沉淀过程形成的层状碳化物在锯齿状试样中变得更加重要,因为试样从1280摄氏度缓慢冷却到的时效温度降低了。在蠕变初始阶段析出的细晶粒内碳化物通过钉扎标准试样中的位错来负责强硬化作用。锯齿状晶界具有稳定的平面M23C6碳化物,因为它们具有很高的抗气穴开裂性,因此具有很高的蠕变延展性。然而,锯齿状样品表现出较高的蠕变速率,这归因于由于缺乏细粒状碳化物而促进了粒内变形,以及层状碳化物的空化。基于微观结构因素与900℃蠕变行为之间的关系,讨论了最佳的微观结构。 (C)2015 Elsevier Inc.保留所有权利。

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