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Online Measurement of Deposit Surface in Electron Beam Freeform Fabrication

机译:电子束自由制造中沉积表面的在线测量

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摘要

In the process of electron beam freeform fabrication (EBF3), due to the continuous change of thermal conditions and variability in wire feeding in the deposition process, geometric deviations are generated in the deposition of each layer. In order to prevent the layer-by-layer accumulation of the deviation, it is necessary to perform online geometry measurement for each deposition layer, based on which the error compensation can be done for the previous deposition layer in the next deposition layer. However, the traditional three-dimensional reconstruction method that employs structured laser cannot meet the requirements of long-term stable operation in the manufacturing process of EBF3. Therefore, this paper proposes a method to measure the deposit surfaces based on the position information of electron beam speckle, in which an electron beam is used to bombard the surface of the deposit to generate the speckle. Based on the structured information of the electron beam in the vacuum chamber, the three-dimensional reconstruction of the surface of the deposited parts is realized without need of additional structured laser sensor. In order to improve the detection accuracy, the detection error is theoretically analyzed and compensated. The absolute error after compensation is smaller than 0.1 mm, and the precision can reach 0.1%, which satisfies the requirements of 3D reconstruction of the deposited parts. An online measurement system is built for the surface of deposited parts in the process of electron beam freeform fabrication, which realizes the online 3D reconstruction of the surface of the deposited layer. In addition, in order to improve the detection stability of the whole system, the image processing algorithm suitable for this scene is designed. The reliability and speed of the algorithm are improved by ROI extraction, threshold segmentation, and expansion corrosion. In addition, the speckle size information can also reflect the thermal conditions of the surface of the deposited parts. Hence, it can be used for online detection of defects such as infusion and voids.
机译:在电子束自由成形制造(EBF3)的过程中,由于热条件的不断变化以及在沉积过程中送丝的变化,在每一层的沉积过程中都会产生几何偏差。为了防止逐层累积偏差,有必要对每个沉积层进行在线几何测量,基于此可以对下一个沉积层中的前一个沉积层进行误差补偿。然而,采用结构化激光的传统三维重建方法不能满足EBF3制造过程中长期稳定运行的要求。因此,本文提出了一种基于电子束散斑的位置信息来测量沉积物表面的方法,其中使用电子束轰击沉积物的表面以产生斑点。基于真空室中电子束的结构信息,无需额外的结构化激光传感器即可实现沉积部分表面的三维重建。为了提高检测精度,从理论上分析和补偿了检测误差。补偿后的绝对误差小于0.1mm,精度可以达到0.1%,可以满足沉积零件3D重建的要求。在电子束自由成型制造过程中,为沉积零件的表面建立了在线测量系统,该系统实现了沉积层表面的在线3D重建。另外,为了提高整个系统的检测稳定性,设计了适合该场景的图像处理算法。通过ROI提取,阈值分割和膨胀腐蚀提高了算法的可靠性和速度。另外,斑点尺寸信息还可以反映沉积部分表面的热状况。因此,它可用于在线检测缺陷,例如输液和空隙。

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