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Microstructural and mechanical characterization of laser deposited advanced materials.

机译:激光沉积高级材料的微观结构和机械特性。

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摘要

Additive manufacturing in the form of laser deposition is a unique way to manufacture near net shape metallic components from advanced materials. Rapid solidification facilitates the extension of solid solubility, compositional flexibility and decrease in micro-segregation in the melt among other advantages. The current work investigates the employment of laser deposition to fabricate the following:;1. Functionally gradient materials: This allows grading dissimilar materials compositionally to tailor specific properties of both these materials into a single component. Specific compositions of the candidate materials (SS 316, Inconel 625 and Ti64) were blended and deposited to study the brittle intermetallics reported in these systems.;2. High entropy alloys: These are multi- component alloys with equiatomic compositions of 5 or more elements. The ratio of Al to Ni was decreased to observe the transition of solid solution from a BCC to an FCC crystal structure in the AlFeCoCrNi system.;3. Structurally amorphous alloys: Zr-based metallic glasses have been reported to have high glass forming ability. These alloys have been laser deposited so as to rapidly cool them from the melt into an amorphous state.;Microstructural analysis and X-ray diffraction were used to study the phase formation, and hardness was measured to estimate the mechanical properties.
机译:激光沉积形式的增材制造是一种由先进材料制造接近最终形状的金属部件的独特方法。快速固化促进了固溶性的扩展,组成的灵活性以及熔体中微偏析的减少以及其他优点。目前的工作是调查激光沉积的制造过程,以制造以下材料:1。功能梯度材料:这允许对不同的材料进行成分分级,以将这两种材料的特定属性调整为单个组件。将候选材料(SS 316,Inconel 625和Ti64)的特定成分混合并沉积,以研究这些系统中报告的脆性金属间化合物。高熵合金:这些是等原子组成为5个或更多元素的多组分合金。降低了Al与Ni的比例,观察了AlFeCoCrNi体系中固溶体从BCC向FCC晶体结构的转变。3。结构上无定形的合金:Zr基金属玻璃据报道具有很高的玻璃成型能力。对这些合金进行了激光沉积,以便将其从熔体中快速冷却至非晶态。;使用微结构分析和X射线衍射研究了相的形成,并测量了硬度以评估机械性能。

著录项

  • 作者

    Sistla, Harihar Rakshit.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Engineering Materials Science.
  • 学位 M.S.
  • 年度 2014
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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