Dependence of mechanical strength on grain structure in the γ' and oxide dispersion- strengthened nickelbase superalloy PM 3030

M. Nganbe, M. Heilmaier, L. Schultz
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引用次数: 5

Abstract

Abstract The mechanical strength of the oxide dispersion-strengthened (ODS) nickelbase superalloy PM 3030 during deformation at constant strain rate (CSR) is discussed with special emphasis placed on its dependence on grain structure. In the fine-grain state the material shows a very high strength at low temperatures due to Hall – Petch type strengthening. However, the 0.2% offset yield strength σ0.2 falls off sharply at temperatures above 700 °C. Increase of grain size by isothermal annealing leads to a reduction of σ0.2 at low temperatures, but also to an increase of creep resistance at higher temperatures. Coarse and elongated grain structures essentially eliminate grain-boundary sliding and reduce diffusion-controlled void formation and, therefore, exhibit a superior strength level at elevated temperatures. The dependence of σ0.2 on grain structure results in a cross-over of the σ0.2 vs. T-curves within a narrow temperature range where all grain variants exhibit similar mechanical strengths. In accord...
γ′和氧化物弥散强化镍基高温合金PM 3030机械强度与晶粒结构的关系
摘要:讨论了氧化分散强化(ODS)镍基高温合金PM 3030在恒应变速率(CSR)变形过程中的机械强度,重点讨论了其与晶粒结构的关系。在细晶状态下,由于霍尔-佩奇型强化,材料在低温下表现出很高的强度。然而,当温度高于700℃时,0.2%偏置的屈服强度σ0.2急剧下降。等温退火增大晶粒尺寸,在低温下σ0.2降低,但在高温下抗蠕变性能也有所提高。粗大和拉长的晶粒结构基本上消除了晶界滑动,减少了扩散控制的空洞形成,因此在高温下表现出优异的强度水平。σ0.2对晶粒结构的依赖性导致了σ0.2与t曲线在一个较窄的温度范围内的交叉,在这个温度范围内,所有晶粒变体都表现出相似的机械强度。在协议……
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