首页> 外文会议>ASME International Design Engineering Technical Conferences;Computers and Information in Engineering Conference >MEASURED DATA ALIGNMENTS FOR MONITORING METAL ADDITIVE MANUFACTURING PROCESSES USING LASER POWDER BED FUSION METHODS
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MEASURED DATA ALIGNMENTS FOR MONITORING METAL ADDITIVE MANUFACTURING PROCESSES USING LASER POWDER BED FUSION METHODS

机译:测量使用激光粉床融合方法监测金属添加剂制造工艺的数据对准

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The number and types of measurement devices used for monitoring and controlling Laser-Based Powder Bed Fusion of Metals (PBF-LB/M) processes and inspecting the resulting AM metal parts have increased rapidly in recent years. The variety of the data collected by such devices has increased, and the veracity of the data has decreased simultaneously. Each measurement device generates data in a unique coordinate system and in a unique data type. Data alignment, however, is required before 1) monitoring and controlling PBF-LB/M processes, 2) predicting the material properties of the final part, and 3) qualifying the resulting AM parts can be done. Aligned means all data must be transformed into a single coordinate system. In this paper, we describe a new, general data-alignment procedure and an example based on PBF-LB/M processes. The specific data objects used in this example include in-situ photogrammetry, thermography, ex-situ X-ray computed tomography (XCT), coordinate metrology, and computer-aided design (CAD) models. We propose a data-alignment procedure to align the data from melt pool images, scan paths, layer images, XCT three-dimensional (3D) model, coordinate measurements, and the 3D CAD model.
机译:用于监测和控制基于激光的粉末床融合的测量装置的数量和类型(PBF-LB / M)过程并检查所得到的AM金属部件近年来迅速增加。通过这种设备收集的数据的各种增加,数据的真实性同时下降。每个测量设备在唯一的坐标系中和唯一的数据类型生成数据。然而,在1)之前的数据对准,监测和控制PBF-LB / M进程,2)预测最终部分的材料特性,以及3)可以完成所得AM部件的限定。对齐方式必须将所有数据转换为单个坐标系。在本文中,我们描述了一种基于PBF-LB / M进程的新的一般数据对齐过程和示例。该示例中使用的特定数据对象包括原位摄影测量,热成像,ex-situ X射线计算机断层扫描(XCT),坐标计量和计算机辅助设计(CAD)型号。我们提出了一种数据对齐过程,以将数据与熔融池图像,扫描路径,层图像,XCT三维(3D)模型,坐标测量和3D CAD模型对齐。

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