《Acta Materialia》本期(Volume 195, 15 August 2020)刊出9篇科研论文,涵盖高熵合金、铝铜合金、镁合金以及不锈钢等多个金属材料领域。
Vol. 195 目录
1. Dynamics of particle-assisted abnormal grain growth revealed through integrated three-dimensional microanalysis
集成三维微观尺度分析揭示第二相粒子对晶粒异常长大影响的动力学特征
2.
镁{10-12}孪晶中形成
3. Kink Formation Process in Long-Period Stacking Ordered Mg-Zn-Y Alloy
长周期有序堆垛Mg-Zn-Y合金中的扭折形成过程
4. Diffusion, defects and understanding the growth of a multicomponent interdiffusion zone between Pt-modified B2 NiAl bond coat and single crystal superalloy
扩散、缺陷以及含铂B2 NiAl涂层与单晶高温合金间多组分互扩散区的长大
5. Twisting of pre-twinned α-Fe nanowires from mild to wild avalanche dynamics
孪晶 α-Fe 纳米线在扭转过程中从温和到剧烈的动力学“雪崩”
6. Effects of heat treatment and build orientation on the evolution of ϵ and α′ martensite and strength during compressive loading of additively manufactured 304L stainless steel
增材制造304L不锈钢热处理及打印方向对ϵ和α′组织演变和压缩性能的影响
7. Consideration of kinetics on intermetallics formation in solid-solution high entropy alloys
固溶态高熵合金中的金属间化合物形成动力学
8. Composition dependence of metallic glass plasticity and its prediction from anelastic relaxation – A shear transformation zone analysis
金属玻璃塑性的成分依赖以及基于非弹性弛豫的塑性预测——切变区分析
9. Radius-dependent homogeneous strain in uncoalesced GaN nanowires
非聚合GaN纳米线的径向相关均匀应变
ACTA Vol. 195, 15 Aug. 2020, P1-12
Dynamics of particle-assisted abnormal grain growth revealed through integrated three-dimensional microanalysis
集成三维微观尺度分析揭示第二相粒子对晶粒异常长大影响的动力学特征
Ning Lua, Jiwoong Kang, Nancy Senabulya, Ron Keinana, Nicolas Gueninchault, Ashwin J. Shahania
https://doi.org/10.1016/j.actamat.2020.04.049
摘要
通常弥散分布在金属、陶瓷等多晶体材料中的第二相粒子会阻碍晶粒长大,使晶粒细化,提升材料的力学性能。然而,在较高温度下经常会观测到部分晶粒的优先长大或异常长大,使得材料的使用寿命大大降低。第二相粒子促进晶粒异常长大的成因和机理一直是学界争论的焦点。在本研究中,作者通过3D-XRD成像技术,揭示了Al-Cu模型合金中晶界和第二相粒子之间的复杂交互作用。在具有高度非随机分布粒子的体系中,观测到了晶粒的异常长大现象。初始晶粒尺寸受控于第二相粒子的集中分布情况,大晶粒往往产生在第二相粒子较少的区域,而某些特定尺寸的晶粒可能会“逃离”晶粒尺寸分布,与考虑了表面张力和粒子钉扎的理论模型预测结果一致。
英文摘要
Secondary-phase particles are routinely dispersed in metals and ceramics to prevent grain growth and take full advantage of the small grain size in the mechanical properties of polycrystals. Somewhat surprisingly, the preferential or abnormal growth of a few grains is observed in particle-containing systems at relatively high temperature, which will limit the lifetime of the material. The origins and mechanisms of particle-assisted abnormal grain growth are widely contested. Here, we employ integrated three-dimensional X-ray imaging to throw new light on the complex interactions between grain boundaries and particles in an Al–Cu alloy as a model system. We observe abnormal grain growth in the presence of a highly non-random distribution of particles. The incipient grain size is set by the local distribution of particles such that the larger grains come from particle-poor regions. Subsequently, grains with a size advantage may “run away” from the grain size distribution, in agreement with predictions from an analytical model that takes into account the competing capillary and particle pinning pressures.
ACTA Vol. 195, 15 Aug. 2020, P13-24
镁{10-12}孪晶中形成
Fulin Wang, Yejun Gu, Rodney J. McCabe, Laurent Capolungo, Jaafar A. El-Awady, Sean R.Agnew
https://doi.org/10.1016/j.actamat.2020.04.033
摘要
根据已发表文献中关于密排六方金属中基体位错和{10-12}孪晶界相互作用的TEM和分子动力学研究结果,启发学界作出了如下猜想,即在孪晶中可以形成
Consideration of published TEM and molecular dynamics studies of interactions between matrix dislocations and {10-12} twin boundaries (TB) in hexagonal close packed metals inspires a hypothesis regarding the formation of dislocations with
Kink Formation Process in Long-Period Stacking Ordered Mg-Zn-Y Alloy
扩散、缺陷以及含铂B2 NiAl涂层与单晶高温合金间多组分互扩散区的长大
Neelamegan Esakkiraja, Ankit Gupta, Vikram Jayaram, Tilmann Hickel, Sergiy V.Divinsk, Aloke Paul
Twisting of pre-twinned α-Fe nanowires from mild to wild avalanche dynamics
孪晶 α-Fe 纳米线在扭转过程中从温和到剧烈的动力学“雪崩”
Yang Yang, Suzhi Li, Xiangdong Ding, Jun Sun, Jerome Weiss, Ekhard K.H. Salje
增材制造304L不锈钢热处理及打印方向对ϵ和α′组织演变和压缩性能的影响
Consideration of kinetics on intermetallics formation in solid-solution high entropy alloys
金属玻璃塑性的成分依赖以及基于非弹性弛豫的塑性预测——切变区分析
T.J.Lei, L. Rangel DaCosta, M.Liu, J.Shen, Y.H.Sun, W.H.Wang, M.Atzmon
Radius-dependent homogeneous strain in uncoalesced GaN nanowires