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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Compositional Changes of Laves Phase Precipitate on Grain Boundary Embrittlement in Long-Term Annealed 9 Pct Cr Ferritic Steel
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Effect of Compositional Changes of Laves Phase Precipitate on Grain Boundary Embrittlement in Long-Term Annealed 9 Pct Cr Ferritic Steel

机译:Laves相位沉淀物在长期退火9PCT Cr铁素体钢中谷物相位沉淀物对晶界脆化的影响

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In 9 to 12 pct chromium steels, the high-temperature mechanical properties are known to be strongly dependent on the formation and coarsening of Laves phase precipitates at boundaries. During high-temperature deformation, the Laves phase precipitate coarsening to over a critical size has been considered to trigger cavity formation at the precipitate-matrix interfaces. This coarsening, accompanied by the diffusion of W, Mo, and Cr, should change the mechanical properties and chemical composition of both Laves phase precipitates and the matrix. In this study, we aimed to clarify the effects of compositional changes of Laves phase precipitates on cavity formation during coarsening. The values of the Fe/Cr and W/Mo ratios in Laves phase precipitates were shown to induce different levels of strain energy in the vicinity of the Laves phase precipitate, consequently promoting the formation of cavities. Therefore, the compositional change of Laves phase precipitates was found to play a critical role in the grain boundary embrittlement of high Cr steel at elevated temperature. (C) The Minerals, Metals & Materials Society and ASM International 2018
机译:在9至12个PCT铬钢中,已知高温机械性能强烈依赖于在边界处的疏浚层沉淀的形成和粗化。在高温变形期间,已经考虑在沉淀 - 基质界面处触发突出尺寸的疏水相沉淀。伴随着W,Mo和Cr的扩散的粗化,应改变疏浚层沉淀物和基质的机械性能和化学组成。在这项研究中,我们旨在阐明在粗化期间芦苇相位沉淀物对腔形成沉淀物的作用变化的影响。在Laves相沉淀物中,Fe / Cr和W / Mo比率的值被示出为诱导疏水剂相沉淀附近的不同水平的应变能量,因此促进腔的形成。因此,发现熔炉相沉淀物的组成变化在高温下在高Cr钢的晶界脆化中发挥着关键作用。 (c)2018年矿物质,金属和材料协会和ASM国际

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