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In-Process Quality Assessment for Additive Manufacturing

机译:增材制造的过程中质量评估

摘要

Disclose is a system and method for real-time measurement and feedback of metrology and metallurgical data during additive manufacturing (AM) part fabrication. This solution promises to provide higher performance, lower cost AM parts. A sensor is placed either in the rake/roller or following the rake/roller so that it has no impact on the process efficiency and can be used to provide real-time feedback and an archived digital map of the entire part volume. The solution provides non-contact sensing of AM layer's electrical conductivity in a high-temperature environment, metallurgical property verification, porosity imaging, local defect detection and sizing, local material temperature monitoring, and grain anisotropy imaging. Part geometry, the AM powder, and the laser/material interface are monitored in real-time. Dual mode sensing using magnetoquasistatic and optical sensors enhance results. Real-time nonlinear control of the AM fabrication process is performed based on the sensor data.
机译:公开是一种用于在增材制造(AM)零件制造过程中实时测量和反馈计量学和冶金数据的系统和方法。该解决方案有望提供更高性能,更低成本的AM零件。传感器放置在耙/辊中或耙/辊之后,因此对过程效率没有影响,可用于提供实时反馈和整个零件体积的存档数字地图。该解决方案可在高温环境中对AM层的电导率进行非接触式感应,冶金特性验证,孔隙率成像,局部缺陷检测和定径,局部材料温度监控以及晶粒各向异性成像。实时监控零件的几何形状,AM粉末和激光/材料界面。使用磁准静态和光学传感器的双模式感应可增强结果。基于传感器数据执行AM制造过程的实时非线性控制。

著录项

  • 公开/公告号US2018120260A1

    专利类型

  • 公开/公告日2018-05-03

    原文格式PDF

  • 申请/专利权人 JENTEK SENSORS INC.;

    申请/专利号US201715796351

  • 发明设计人 NEIL J. GOLDFINE;TODD M. DUNFORD;

    申请日2017-10-27

  • 分类号G01N27/90;B22F3/105;B33Y50/02;B33Y10;B33Y30;

  • 国家 US

  • 入库时间 2022-08-21 13:02:32

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