首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of tungsten and rhenium additions on phase-separation in a model Ni-Al-Cr-W-Re superalloy: A four-dimensional study
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Effects of tungsten and rhenium additions on phase-separation in a model Ni-Al-Cr-W-Re superalloy: A four-dimensional study

机译:钨和铼添加对Ni-Al-W-Re超合金模型中相分离的影响:四维研究

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The effects of a combined 1.0 at.% W and 1.0 at.% Re addition to a model Ni-10.0Al-8.5Cr at.% superalloy aged at 1073 K (800 degrees C) for aging times up to 256 h are investigated using atom-probe tomography (APT) and Vickers microhardness measurements. The nanoscale properties, including volume fraction, meanvolume equivalent-radius and number density of the gamma'(L1(2))-precipitates, the chemical compositions of the gamma(f.c.c.)-matrix and gamma'(L1(2))-precipitates, the concentration profiles and partitioning ratios between the two phases, gamma(f.c.c.)/gamma'(L1(2)), hetero-interfacial concentration widths, and microhardness are measured as function of increasing aging time. Localized excesses of the solvent Ni at the gamma(f.c.c.)/gamma'(L12) interfaces persist at aging times as long as 256 h. Transient diffusional concentration gradients associated with solute-atoms during diffusion-limited growth exist in either the gamma(f.c.c.)-matrix or gamma'(L1(2))-precipitates for the as-quenched state; these gradients disappear after 0.25 h for Al and Cr, and after 1 h for W and Re. Tungsten partitions to the gamma'(L1(2))-precipitates and Re partitions to the gamma(f.c.c.)-matrix, respectively, and this partitioning behavior enhances the partitioning of Al to the gamma'(L1(2))-precipitates and Cr to the gamma(f.c.c.)-matrix. The partitioning behavior indicates that W and Re evolve temporally more slowly than Al and Cr due to their small diffusivities in Ni. The interfacial concentration widths in the NiAl-Cr-W-Re alloy decrease with increasing aging time and increasing mean precipitate-radius. Adding W and Re to the base Ni-10.0Al-8.5Cr at.% alloy increases the gamma'(L1(2))-precipitate volume fraction and the microhardness due to the increased volume-fraction and solid-solution strengthening provided by W and Re. (C) 2019 Elsevier B.V. All rights reserved.
机译:组合1.0的效果。%w和1.0。%重复于Ni-10.0Al-8.5cr的型号。%在1073k(800℃)时的高温合金,用于使用高达256小时的衰老时间达到256小时原子探测断层扫描(APT)和VICKERS微硬度测量。纳米级特性,包括体积分数,γ'(L1(2)) - 沉淀物,γ(FCC)-Matrix和γ'的化学成分(L1(2)) - 沉淀物,两相,γ(FCC)/γ'(L1(2)),杂界浓度宽度和显微硬度之间的浓度分布和分配比例被测量为增加老化时间的功能。在γ(F.C.C.)/γ'(L12)界面处的溶剂Ni的局部过量持续在256小时的老化时间上持续存在。在扩散限制生长期间与溶质原子相关的瞬态扩散浓度梯度存在于γ(F.C.) - 基质或γ'(L1(2)) - 用于淬火状态的沉淀物;对于Al和Cr 0.25小时,这些梯度消失,1小时后,W和RE。钨的钨(L1(2))分别 - 析出并分别析出γ(FCC)-matrix,并且该分区行为增强了Al对γ'的分配(L1(2)) - 沉淀物和沉淀物CR到伽玛(FCC)-Matrix。分区行为表明,由于它们在Ni中的小扩散性,W和CR在时间上比Al和Cr更慢地发展。 Nial-Cr-W重合金中的界面浓度宽度随着老化时间的增加和增加平均沉淀 - 半径而降低。添加W和RE到基础Ni-10.0Al-8.5crat。%合金增加γ'(L1(2)) - 由于W的体积分数增加和固溶强化,沉淀体积分数和显微硬度和重新。 (c)2019 Elsevier B.v.保留所有权利。

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