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Characterization of Ti-Al-Er alloy produced via direct laser deposition

机译:通过直接激光沉积制备的Ti-Al-Er合金的表征

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摘要

Recent advances in manufacturing technology have led to the development of a new breed of advanced materials. These new materials are process dependent and would be difficult, if not impossible, to produce using conventional methods. Laser direct manufacturing (LDM) is a solid freeform fabrication process that enables the production of these advanced materials. LDM utilizes a high energy density heat source, powdered metal feedstock, and computer driven machine controls to produce bulk materials in near-net shape form. The combination of powdered metallurgy (P/M) and rapid solidification processing (RSP) allow bulk structures to be made with novel compositions and unique properties. In addition, near-net shape production eliminates the need for thermomechanical post-processing that can nullify some of the metallurgical advantages gained through RSP and P/M. These advantages have led to the development of alloys specifically tailored to the LDM process. This paper describes a dispersion hardened erbium-bearing titanium alloy developed to couple with the processing advantages found in the laser direct manufacturing process.
机译:制造技术的最新进步导致了新型先进材料的开发。这些新材料取决于工艺,并且即使不是不可能,也很难使用常规方法生产。激光直接制造(LDM)是一种自由形式的固体制造工艺,可以生产这些先进的材料。 LDM利用高能量密度的热源,粉末状的金属原料和计算机驱动的机器控制来生产接近最终形状的散装物料。粉末冶金(P / M)和快速凝固工艺(RSP)的结合使整体结构可以具有新颖的成分和独特的性能。此外,近乎净形的生产消除了对热机械后处理的需求,而热机械后处理可以消除通过RSP和P / M获得的某些冶金优势。这些优势导致开发了专门针对LDM工艺的合金。本文介绍了一种弥散硬化的含titanium钛合金,其开发与激光直接制造工艺中发现的加工优势相结合。

著录项

  • 来源
    《Journal of Materials Science》 |2003年第7期|1517-1521|共5页
  • 作者

    C. A. Brice; H. L. Fraser;

  • 作者单位

    Department of Materials Science and Engineering The Ohio State University Columbus;

    Department of Materials Science and Engineering The Ohio State University Columbus;

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  • 原文格式 PDF
  • 正文语种 eng
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