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Characterization of Ti-6Al-4V produced via electron beam additive manufacturing.

机译:通过电子束增材制造生产的Ti-6Al-4V的表征。

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摘要

In recent years, additive manufacturing (AM) has become an increasingly promising method used for the production of structural metallic components. There are a number of reasons why AM methods are attractive, including the ability to produce complex geometries into a near-net shape and the rapid transition from design to production. Ti-6Al-4V is a titanium alloy frequently used in the aerospace industry which is receiving considerable attention as a good candidate for processing via electron beam additive manufacturing (EBAM). The Sciaky EBAM method combines a high-powered electron beam, weld-wire feedstock, and a large build chamber, enabling the production of large structural components. In order to gain wide acceptance of EBAM of Ti-6Al-4V as a viable manufacturing method, it is important to understand broadly the microstructural features that are present in large-scale depositions, including specifically: the morphology, distribution and texture of the phases present. To achieve such an understanding, stereological methods were used to populate a database quantifying key microstructural features in Ti-6Al-4V including volume fraction of phases, alpha lath width, colony scale factor, and volume fraction of basket weave type microstructure. Microstructural features unique to AM, such as elongated grains and banded structures, were also characterized. Hardness and tensile testing were conducted and the results were related to the microstructural morphology and sample orientation. Lastly, fractured surfaces and defects were investigated. The results of these activities provide insight into the process-structure-properties relationships found in EBAM processed Ti-6Al-4V.
机译:近年来,增材制造(AM)已成为用于生产金属结构部件的越来越有前途的方法。 AM方法之所以具有吸引力,有很多原因,包括能够将复杂的几何形状生成接近最终形状的能力以及从设计到生产的快速过渡。 Ti-6Al-4V是在航空航天工业中经常使用的钛合金,作为通过电子束增材制造(EBAM)进行加工的良好选择,受到了广泛的关注。西亚基EBAM方法结合了高功率电子束,焊丝给料和大型装配室,可生产大型结构部件。为了获得Ti-6Al-4V的EBAM作为一种可行的制造方法的广泛认可,重要的是要广泛地理解大规模沉积物中存在的微观结构特征,具体包括:相的形态,分布和织构当下。为了获得这种理解,使用了立体学方法来填充一个数据库,该数据库对Ti-6Al-4V中的关键微结构特征进行了量化,包括相的体积分数,α条宽,菌落比例因子和篮式微结构的体积分数。还表征了AM特有的微观结构特征,例如细长晶粒和带状结构。进行了硬度和拉伸试验,结果与显微组织形态和样品取向有关。最后,研究了断裂的表面和缺陷。这些活动的结果提供了对EBAM处理的Ti-6Al-4V中的过程-结构-性能关系的深入了解。

著录项

  • 作者

    Hayes, Brian J.;

  • 作者单位

    University of North Texas.;

  • 授予单位 University of North Texas.;
  • 学科 Materials science.;Engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 75 p.
  • 总页数 75
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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