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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Effect of the microstructure on the creep behavior of PM Udimet 720 superalloy—experiments and modeling
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Effect of the microstructure on the creep behavior of PM Udimet 720 superalloy—experiments and modeling

机译:显微组织对PM Udimet 720高温合金蠕变行为的影响-实验和建模

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摘要

Powder metallurgy processed Udimet 720 is a high creep strength nickel-based superalloy considered for high temperature turbine disks for nuclear gas cooled reactors working under 700℃. Both fine-grained and coarse-grained microstructures have been obtained by applying respectively a subsolvus or a supersolvus solution treatments, followed by ageing treatments. In both microstructures, the distribution of the strengthening γ′ precipitates has been characterized by transmission electron microscopy (TEM). The creep curves of the coarse-grained microstructure show the three usual creep stages. On the contrary, the creep curves of the fine-grained microstructure show a transition directly from primary to apparent tertiary creep without any obvious steady state. According to TEM analyses, Orowan loops surround Udimet 720 CR γ′ and U720 HS γ′ at high stress whereas U720 HS γ′ are sheared at low stress. To describe the behavior of the superalloy Udimet 720, a specific creep model is developed on the basis of McLean and Dyson models including physical damage parameters.
机译:粉末冶金加工的Udimet 720是一种高蠕变强度的镍基高温合金,被认为是用于700℃以下工作的核气冷却反应堆的高温涡轮盘。通过分别进行亚固溶或超固溶固溶处理,然后进行时效处理,可以获得细晶粒和粗晶粒的微观结构。在这两个微观结构中,已通过透射电子显微镜(TEM)对增强的γ'沉淀物的分布进行了表征。粗晶粒组织的蠕变曲线显示了三个通常的蠕变阶段。相反,细晶粒微观结构的蠕变曲线显示出从初级蠕变直接转变为表观三次蠕变,而没有任何明显的稳态。根据TEM分析,Orowan环在高应力下环绕Udimet 720 CRγ'和U720 HSγ',而在低应力下剪切U720 HSγ'。为了描述超级合金Udimet 720的行为,基于McLean和Dyson模型(包括物理损伤参数)开发了特定的蠕变模型。

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