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Smart additive manufacturing system (SAMS)

机译:智能增材制造系统(SAMS)

摘要

An additive manufacturing process is monitored, in situ, using optical emission spectroscopy to analyze the composition, phase transformation or manufacturing defects. The system or method may include an analysis of contours of the plasma line intensity, or pre-processing of the plasma spectral line including signal-to-noise ratio analysis, baseline removal, line identification, line de-convolution and fitting. Improvements may additionally involve consideration of plasma parameters such as plasma spectral line intensity, line ratio, plasma temperature and electron density using high-resolution optical emission spectroscopy in both visible and ultraviolet regions. Parameters of the plasma may be determined using an intensity ratio of the ions or atoms emission lines, a FWHM of the line profile for electron density estimation, or a Boltzmann plot for plasma temperature estimation. One or more techniques may be used to monitor when there is a lack of deposition.
机译:使用光发射光谱法就地监测增材制造过程,以分析其成分,相变或制造缺陷。该系统或方法可以包括对等离子线强度的轮廓进行分析,或者对等离子光谱线进行预处理,包括信噪比分析,基线去除,线识别,线反卷积和拟合。改进还可以涉及在可见和紫外区域使用高分辨率光学发射光谱法考虑等离子体参数,例如等离子体光谱线强度,线比,等离子体温度和电子密度。可以使用离子或原子发射线的强度比,用于电子密度估计的线轮廓的FWHM,或用于等离子体温度估计的玻耳兹曼图来确定等离子体的参数。可以使用一种或多种技术来监测何时缺乏沉积。

著录项

  • 公开/公告号US9981341B2

    专利类型

  • 公开/公告日2018-05-29

    原文格式PDF

  • 申请/专利权人 JYOTI MAZUMDER;LIJUN SONG;

    申请/专利号US201514834806

  • 发明设计人 JYOTI MAZUMDER;LIJUN SONG;

    申请日2015-08-25

  • 分类号B23K26/342;B23K26/03;B29C67;B23K31/12;B33Y50/02;

  • 国家 US

  • 入库时间 2022-08-21 12:57:27

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