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On the toughness scatter in low alloy C-Mn steel samples fabricated using wire arc additive manufacturing

机译:关于使用电弧电弧增材制造的低合金C-Mn钢样品的韧性散布

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摘要

Low alloy carbon manganese (C-Mn) steel builds were fabricated using a wire based additive manufacturing system developed at Oak Ridge National Laboratory. Specimens were fabricated in the X,Y and Z direction and detailed mechanical testing was performed. The mechanical testing results showed a significant scatter in tensile ductility and significant variation in Charpy toughness. Further detailed microstructure characterization showed significant microstructural heterogeneity in builds fabricated in each direction. The scatter in mechanical properties was then rationalized based on the microstructural observations and the underlying changes in the local heat transfer conditions. The results indicate that when fabricating parts using C-Mn low alloy steel welds the process parameters and tool path should be chosen such that the cooling rate from 800 ℃ to 500 ℃ is greater than 30 s to avoid formation of martensite austenite (MA) phases, which leads to toughness reductions.
机译:低合金碳锰(C-Mn)钢构件是使用Oak Ridge国家实验室开发的基于线材的增材制造系统制造的。在X,Y和Z方向上制作了样品,并进行了详细的机械测试。力学测试结果表明,拉伸延展性明显分散,夏比韧性显着变化。进一步详细的微观结构表征显示了在每个方向上制造的构件中明显的微观结构异质性。然后,根据微观结构观察结果和局部传热条件的根本变化,合理地分散机械性能。结果表明,在使用C-Mn低合金钢焊接零件时,应选择工艺参数和工具路径,以使800℃至500℃的冷却速率大于30 s,以避免形成马氏体奥氏体(MA)相。 ,导致韧性降低。

著录项

  • 来源
    《Materials Science and Engineering》 |2018年第24期|18-27|共10页
  • 作者单位

    Material Science and Technology Division, Oak Ridge National Laboratory, United States;

    Energy and Transportation Sciences Division, Oak Ridge National Laboratory, United States;

    Energy and Transportation Sciences Division, Oak Ridge National Laboratory, United States;

    Energy and Transportation Sciences Division, Oak Ridge National Laboratory, United States;

    Material Science and Technology Division, Oak Ridge National Laboratory, United States;

    Energy and Transportation Sciences Division, Oak Ridge National Laboratory, United States,Department of Mechanical Aerospace Biomedical Engineering University of Tennessee, Knoxville, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Steel; Additive manufacturing; Mechanical properties; Characterization;

    机译:钢;添加剂制造;机械性能表征;

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