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Development of metal matrix composite powder cored tubular wire for electron beam freeform fabrication

机译:用于电子束自由成形的金属基复合粉芯药芯焊丝的研制

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摘要

Electron Beam Freeform Fabrication (EBF3) is a technique, developed at NASA Langley Research Center (NASA-LaRC), which uses a computerized numerical controlled electron beam welder and a wire feed system to fabricate large scale aerospace parts. Advantages of using EBF3 as opposed to conventional manufacturing methods include decreased deign-to-product time, decreased wasted material, and the ability to adapt controls to produce geometrically complex parts. The EBF3 process is compatible with a range of aerospace alloys and material properties of parts produced by this process have been shown to be comparable to wrought products. However, to fully exploit the potential of the EBF3 process, development of materials tailored for the process is required. This research used alloy theory, as well as powder cored tubular wire technology, to develop aluminum based metal matrix composite feedstock for the EBF3 system.;Five iterations of powder cored tubular wire were made using silicon carbide particulates with different surface conditions. Uncoated particles, as well as particles with high and low amounts of copper and nickel coatings, were incorporated into the powder core. Single and multiple layer deposits were made using each wire. Beam conditions were varied for each wire to determine the optimal combination of feedstock material and electron beam parameters required to create a uniformly distributed metal matrix composite deposit using EBF3.;Completely uniform dispersion of the reinforcement particles was not achieved in the matrix, however, it was determined that nickel additions enhanced particle dispersion as well as mitigated solidification cracking and secondary carbide formation. It was also determined that using a lower energy beam also promotes dispersion and mitigates secondary carbide formation. Computational models were created to predict phase transformations and particle dispersion in the matrix for various conditions. The thermodynamic and fluid dynamic models were able to describe trends observed through characterization of EBF3 depositions. Results collected from characterization of the deposits as well as trends observed in the models can be used to plan future iterations of powder cored tubular wire feedstock, as well as deposition parameters, to create homogeneous metal matrix composite structures by Electron Beam Freeform Fabrication.
机译:电子束自由成形(EBF3)是由NASA兰利研究中心(NASA-LaRC)开发的一种技术,它使用计算机控制的数控电子束焊机和送丝系统来制造大型航空零件。与传统的制造方法相比,使用EBF3的优点包括缩短了设计时间,减少了浪费的材料,并具有适应控制以生产几何形状复杂零件的能力。 EBF3工艺可与多种航空合金兼容,并且已证明该工艺生产的零件的材料性能与锻造产品相当。但是,为了充分利用EBF3工艺的潜力,需要开发专门针对该工艺的材料。本研究利用合金理论以及粉芯药芯焊丝技术开发了用于EBF3系统的铝基金属基复合材料。;使用不同表面条件的碳化硅颗粒对粉芯药芯焊丝进行了五次迭代。将未涂覆的颗粒以及具有高和低数量的铜和镍涂层的颗粒掺入压粉芯中。使用每条线进行单层和多层沉积。每条焊丝的束流条件各不相同,以确定使用EBF3形成均匀分布的金属基复合材料沉积物所需的原料和电子束参数的最佳组合;但是在基体中并未实现增强颗粒的完全均匀分散,但是已确定添加镍可增强颗粒分散性,并减轻固化裂纹和二次碳化物的形成。还确定了使用较低能量束也可促进分散并减轻二次碳化物的形成。创建了计算模型以预测各种条件下相变和基质中颗粒的分散。热力学和流体动力学模型能够描述通过表征EBF3沉积物观察到的趋势。从沉积物表征中收集的结果以及在模型中观察到的趋势可用于计划粉末芯管状焊丝原料的未来迭代以及沉积参数,以通过电子束自由成型制造来创建均质的金属基复合材料结构。

著录项

  • 作者

    Gonzales, Devon Scott.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Materials science.
  • 学位 M.S.
  • 年度 2015
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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