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Individual and synergistic effects of Mn and Mo micro-additions on precipitation and strengthening of a dilute Al-Zr-Sc-Er-Si alloy

机译:Mn和Mo微量添加对稀释Al-SC-ER-Si合金沉淀和强化的个体和协同作用

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摘要

Dilute Al-Er-Sc-Zr-Si alloys strengthened by coherent Al3(Er,Sc,Zr)(Ll_2) nanoprecipitates have excellent coarsening- and creep-resistance up to 400 °C. Herein, the effects of micro-additions of 0.25 at.% Mn and/or 0.10 at.% Mo to a dilute Al-0.08Zr-0.014Sc-0.008Er-0.09Si (at.%) alloy are investigated with respect to precipitate evolution and the resulting strengths after different aging treatments. Both Mn and Mo provide solid-solution strengthening, contributing to ambient-temperature strength, in addition to elevated-temperature creep resistance. Ll_2-core-shell nanoprecipitates created upon aging at 400 °C exhibit Mn partitioning at the Sc- and Er-rich precipitate cores, and Mo throughout the precipitates. Manganese-modified Ll2-precipitates exhibit a higher number density (~7.5 × 10~(22) m~(-3) for peak-aged condition), while Mo-modified L_2-nanoprecipitates display significantly improved coarsening-resistance. No notable synergistic effect of Mn and Mo additions strengthening upon isothermal aging at 400 °C are observed. Isochronal aging displays, however, that a Mo addition delays the formation of Al/Si/Mn-rich α-precipitates from 425 °C to 475 °C. Both Mn and Mo additions improve the creep resistance of the alloys at 300 °C. Manganese-bearing alloys exhibit a more significant effect, as it doubles the threshold stress compared to the Mn-free base alloy. This strong effect could be a result of fine a-precipitates (<20 nm) formed during the creep experiments at 300 °C for the peak-aged sample. The over-aged Mn-con-taining samples are less creep resistant due to coarsening of both existing Ll_2-nanoprecipitates and the absence of fine α-precipitates formed during creep.
机译:通过相干Al3(ER,SC,Zr)(LL_2)纳米沉淀物强化的稀释Al-ER-SC-Zr-Si合金具有优异的粗化和抗蠕变性,耐高达400℃。在此,对稀释Al-0.08Zr-0.014SC-0.080R-0.014SC-0.00010-0.09Si(AT.%)合金的重量为0.25at%,0.25℃。%Mo。%Mo。不同老化治疗后的进化和所得优点。除了升高温度蠕变抗性之外,Mn和Mo均提供固体溶液强化,促进环境温度强度。在400°C时在400℃下表现出在Sc-old沉淀物芯的时老化时产生的LL_2-核 - 烷基嵌段,并且在整个沉淀物中均匀。锰改性的LL2-沉淀物表现出较高的数量密度(〜7.5×10〜(22)m〜(-3),用于峰值老化的条件),而Mo改性的L_2-纳米沉淀物显示出显着提高的粗化抗性。观察到在400℃下等温老化的Mn和Mo添加的显着协同效应。然而,同胞影老化显示器,MO添加延迟了从425℃至475℃的Al / Si / Mn的α-沉淀物的形成。 Mn和Mo添加改善了300℃的合金的蠕变电阻。载锰合金具有更显着的效果,因为它使阈值应力加倍与无锰碱合金相比。这种强烈的效果可能是在峰值老化样品的300℃下在蠕变实验期间形成的细A沉淀物(<20nm)的结果。由于现有的LL_2-纳米沉淀物的粗化和在蠕变期间形成的不存在细胞形成,过度老化的Mn-Con-Tained样品耐粗耐抗性。

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  • 来源
    《Materials Science and Engineering》 |2021年第7期|140288.1-140288.14|共14页
  • 作者单位

    Northwestern University Department of Materials Science and Engineering 2220 Campus Drive Evanston IL 60208 USA;

    Northwestern University Department of Materials Science and Engineering 2220 Campus Drive Evanston IL 60208 USA Empa Swiss Federal Laboratories for Materials Science and Technology Laboratory for Advanced Materials Processing Uberlandstrasse 129 CH 8600 Dubendorf Switzerland;

    Northwestern University Department of Materials Science and Engineering 2220 Campus Drive Evanston IL 60208 USA;

    Northwestern University Department of Materials Science and Engineering 2220 Campus Drive Evanston IL 60208 USA Northwestern University Center for Atom-Probe Tomography 2220 Campus Drive Evanston IL 60208 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aluminum alloys; Precipitation-strengthening; Creep; Atom-probe tomography; Transmission electron microscopy;

    机译:铝合金;沉淀加强;蠕动;原子探测断层扫描;透射电子显微镜;

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