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Processing of iron-based glass-forming alloys by the uniform-droplet spray process.

机译:通过均匀液滴喷涂工艺加工铁基玻璃成型合金。

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摘要

The uniform-droplet spray (UDS) process involves the capillary jet break-up via sonic perturbations and the subsequent solidification of the resulting mono-size droplets into deposits or powders. The unique ability to precisely control the thermal history and the resulting microstructure has been harnessed in several studies of process-structure relationships in metals and alloys.In the present work, the fundamental aspects of the phenomenon of jet break-up is revisited and a methodology is developed for estimating the UDS processing parameters such as applied pressure, frequency, orifice diameter and jet velocity for a target droplet size. Numerical studies of these parameters are carried out. The current models for droplet dynamics and thermal transport are appropriately modified. Modifications in the existing models for the droplet nucleation and solidification are presented. New models are presented for the metallographic determination of the dual phase heat transfer in oil-quenched droplets and motion-thermal characteristics of droplet arrays subjected to gas jets. In-flight solidification simulations were carried out on, 200-1000 mum droplets of a Sn-5 (mass %) Pb droplets using a software developed in this work.UDS experiments were carried out on glass-forming alloys, Fe75.5 C10.5B6.3Si5.3P1.3Mo, Fe 72C8B7.3Cr4.3Si5.3P 2Mo, Fe67.3C11V3.7Cr 12.5Si5P2Mn0.7 and Fe45Ni 22.5Co7.5Mo3B14Si8. The Fe75.5C10.5B6.3 Si5.3P1.3Mo alloy droplets solidify with the formation Fe9SiC0.4 dendrites, followed by that of the bcc matrix with the microstructural evolution in them in accordance with the thermal histories predicted by the in-flight solidification model. Fully and partially amorphous balls of Fe45Ni22.5Co7.5Mo3B 14Si8 alloy were produced at different UDS processing conditions the glass formation in these droplets was verified by XRD and DSC measurements. Stalagmites, 3 to 5 cm in length, were processed by the deposition of Fe 45Ni22.5Co7.5Mo3B14Si 8 alloy droplets in oil with superheated and mushy droplets. The deposits showed a fine, equiaxed structure at the root and an as cast morphology at the top. Further adjusting process parameters would facilitate epitaxial growth of columnar crystals.
机译:均匀液滴喷雾(UDS)过程涉及通过声波扰动使毛细管射流破裂,然后将所得的单一尺寸液滴固化为沉积物或粉末。在金属和合金的过程-结构关系的多项研究中,利用了精确控制热历史和所得微观结构的独特能力。在本工作中,我们重新研究了射流破裂现象的基本方面并采用了一种方法开发用于估算目标液滴尺寸的UDS处理参数(例如施加的压力,频率,孔口直径和喷射速度)的工具。对这些参数进行了数值研究。液滴动力学和热传递的当前模型已适当修改。提出了对液滴成核和凝固的现有模型的修改。提出了新的模型,用于金相测定油淬火液滴中的双相传热以及经受气体喷射的液滴阵列的运动热特性。使用这项工作开发的软件,对200-1000微米的Sn-5(质量%)Pb液滴进行了飞行中的凝固模拟.UDS实验是在玻璃形成合金Fe75.5 C10上进行的。 5B6.3Si5.3P1.3Mo,Fe 72C8B7.3Cr4.3Si5.3P 2Mo,Fe67.3C11V3.7Cr 12.5Si5P2Mn0.7和Fe45Ni 22.5Co7.5Mo3B14Si8。 Fe75.5C10.5B6.3 Si5.3P1.3Mo合金液滴凝固,形成Fe9SiC0.4树枝状晶体,然后根据飞行中凝固所预测的热历史,对其中具有微结构演变的bcc基体进行凝固。模型。 Fe45Ni22.5Co7.5Mo3B 14Si8合金的完全和部分非晶态球是在不同的UDS处理条件下生产的,通过XRD和DSC测量验证了这些液滴中的玻璃形成。通过将Fe 45Ni22.5Co7.5Mo3B14Si 8合金小滴沉积在带有过热且糊状的油中来处理长3至5厘米的石笋。沉积物在根部显示出精细的等轴结构,在顶部显示出铸型形态。进一步调节工艺参数将促进柱状晶体的外延生长。

著录项

  • 作者

    Pillai, Suresh Kumar.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Engineering Mechanical.Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:43

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