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The effects of deposit thermal history on microstructure produced by uniform droplet spray forming

机译:沉积热历史对均匀液滴喷射成形微观结构的影响

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摘要

Uniform droplet spray forming is a process aimed at producing near-net-shape parts directly from the liquid melt by spraying micron-sized droplets onto a movable target. In spray forming, the solidification rate of the deposited material is a key parameter that influences its microstructure formation and consequently, its mechanical properties. Ideal deposit microstructure has fine grain size and minimal segregation. The purpose of this thesis is to quantify the effects of deposit thermal history on the microstructure produced by the UDS forming process. Experiments were conducted with Zn-20wt% Sn alloy droplets using different process parameters to vary the deposit solidification rate from 6⁰C/s to 27⁰C/s immediately after deposition. The temperature of the sprayed deposits was measured in situ with a fiber-optic infrared thermometer and a contact thermocouple. Furthermore, a 2-D axisymmetric finite element model was developed to predict the temperature of the deposit during and after deposition. The simulation results show that radial heat conduction cannot be neglected when the thermal diffusivity of the substrate material is comparable to the diffusivity of the deposit material. Simulation results showed good agreement with the measured temperature data. The resultant deposit microstructures were examined with scanning electron microscopy, which revealed that the deposit microstructure includes a mixture of solidified phases formed inside the droplets before impact.
机译:均匀的液滴喷射成形是一种旨在通过将微米级的液滴喷射到可移动的目标上,直接从液态熔体生产近净形零件的过程。在喷涂成型中,沉积材料的固化速率是影响其微观结构形成并进而影响其机械性能的关键参数。理想的沉积物微观结构具有良好的晶粒尺寸和最小的偏析。本文的目的是量化沉积热历史对UDS成形过程产生的微观结构的影响。使用不同的工艺参数对Zn-20wt%Sn合金微滴进行实验,以在沉积后立即将沉积凝固速率从6⁰C/ s更改为27⁰C/ s。用光纤红外测温仪和接触式热电偶原位测量喷涂沉积物的温度。此外,建立了二维轴对称有限元模型来预测沉积过程中和沉积后的温度。仿真结果表明,当基底材料的热扩散率与沉积材料的扩散率相当时,径向热传导不能被忽略。仿真结果与实测温度数据吻合良好。用扫描电子显微镜检查所得的沉积物显微结构,发现该沉积物显微结构包括冲击之前在液滴内部形成的凝固相的混合物。

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  • 作者

    Cherng Jean-Pei Jeanie;

  • 作者单位
  • 年度 2002
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  • 原文格式 PDF
  • 正文语种 eng
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